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Computed Statistics Reference

This document lists all computed statistics available in ParticleGroup.

These are derived from base statistics by applying operators.

Total: 1147 computed statistics

  • 186 operator statistics (mean, sigma, min, max, ptp, delta)
  • 961 covariance statistics

Contents

Operators

The following operators can be applied to any base array statistic:

Operator Symbol Pattern Description
mean_ \(\langle X \rangle\) Weighted mean of X
sigma_ \(\sigma_{X}\) Weighted standard deviation of X
min_ \(\min(X)\) Minimum value of X
max_ \(\max(X)\) Maximum value of X
ptp_ \(\Delta X\) Peak-to-peak range (max - min) of X
delta_ \(\Delta X\) Deviation from mean of X

Mean

Weighted mean of base quantities.

Label Symbol Units Base
mean_x \(\langle x \rangle\) m x
mean_y \(\langle y \rangle\) m y
mean_z \(\langle z \rangle\) m z
mean_px \(\langle p_x \rangle\) eV/c px
mean_py \(\langle p_y \rangle\) eV/c py
mean_pz \(\langle p_z \rangle\) eV/c pz
mean_t \(\langle t \rangle\) s t
mean_status \(\langle \text{status} \rangle\) 1 status
mean_weight \(\langle w \rangle\) C weight
mean_id \(\langle \text{id} \rangle\) 1 id
mean_z/c \(\langle z/c \rangle\) s z/c
mean_p \(\langle p \rangle\) eV/c p
mean_energy \(\langle E \rangle\) eV energy
mean_kinetic_energy \(\langle E_\text{kinetic} \rangle\) eV kinetic_energy
mean_xp \(\langle x' \rangle\) rad xp
mean_yp \(\langle y' \rangle\) rad yp
mean_higher_order_energy \(\langle E_{(2)} \rangle\) eV higher_order_energy
mean_r \(\langle r \rangle\) m r
mean_theta \(\langle \theta \rangle\) rad theta
mean_pr \(\langle p_r \rangle\) eV/c pr
mean_ptheta \(\langle p_{\theta} \rangle\) eV/c ptheta
mean_Lz \(\langle L_z \rangle\) m*eV/c Lz
mean_gamma \(\langle \gamma \rangle\) 1 gamma
mean_beta \(\langle \beta \rangle\) 1 beta
mean_beta_x \(\langle \beta_x \rangle\) 1 beta_x
mean_beta_y \(\langle \beta_y \rangle\) 1 beta_y
mean_beta_z \(\langle \beta_z \rangle\) 1 beta_z
mean_x_bar \(\langle \overline{x} \rangle\) sqrt(m) x_bar
mean_px_bar \(\langle \overline{p_x} \rangle\) sqrt(m) px_bar
mean_Jx \(\langle J_x \rangle\) m Jx
mean_Jy \(\langle J_y \rangle\) m Jy

Standard Deviation

Weighted standard deviation of base quantities.

Label Symbol Units Base
sigma_x \(\sigma_{x}\) m x
sigma_y \(\sigma_{y}\) m y
sigma_z \(\sigma_{z}\) m z
sigma_px \(\sigma_{p_x}\) eV/c px
sigma_py \(\sigma_{p_y}\) eV/c py
sigma_pz \(\sigma_{p_z}\) eV/c pz
sigma_t \(\sigma_{t}\) s t
sigma_status \(\sigma_{\text{status}}\) 1 status
sigma_weight \(\sigma_{w}\) C weight
sigma_id \(\sigma_{\text{id}}\) 1 id
sigma_z/c \(\sigma_{z/c}\) s z/c
sigma_p \(\sigma_{p}\) eV/c p
sigma_energy \(\sigma_{E}\) eV energy
sigma_kinetic_energy \(\sigma_{E_\text{kinetic}}\) eV kinetic_energy
sigma_xp \(\sigma_{x'}\) rad xp
sigma_yp \(\sigma_{y'}\) rad yp
sigma_higher_order_energy \(\sigma_{E_{(2)}}\) eV higher_order_energy
sigma_r \(\sigma_{r}\) m r
sigma_theta \(\sigma_{\theta}\) rad theta
sigma_pr \(\sigma_{p_r}\) eV/c pr
sigma_ptheta \(\sigma_{p_{\theta}}\) eV/c ptheta
sigma_Lz \(\sigma_{L_z}\) m*eV/c Lz
sigma_gamma \(\sigma_{\gamma}\) 1 gamma
sigma_beta \(\sigma_{\beta}\) 1 beta
sigma_beta_x \(\sigma_{\beta_x}\) 1 beta_x
sigma_beta_y \(\sigma_{\beta_y}\) 1 beta_y
sigma_beta_z \(\sigma_{\beta_z}\) 1 beta_z
sigma_x_bar \(\sigma_{\overline{x}}\) sqrt(m) x_bar
sigma_px_bar \(\sigma_{\overline{p_x}}\) sqrt(m) px_bar
sigma_Jx \(\sigma_{J_x}\) m Jx
sigma_Jy \(\sigma_{J_y}\) m Jy

Minimum

Minimum value of base quantities.

Label Symbol Units Base
min_x \(\min(x)\) m x
min_y \(\min(y)\) m y
min_z \(\min(z)\) m z
min_px \(\min(p_x)\) eV/c px
min_py \(\min(p_y)\) eV/c py
min_pz \(\min(p_z)\) eV/c pz
min_t \(\min(t)\) s t
min_status \(\min(\text{status})\) 1 status
min_weight \(\min(w)\) C weight
min_id \(\min(\text{id})\) 1 id
min_z/c \(\min(z/c)\) s z/c
min_p \(\min(p)\) eV/c p
min_energy \(\min(E)\) eV energy
min_kinetic_energy \(\min(E_\text{kinetic})\) eV kinetic_energy
min_xp \(\min(x')\) rad xp
min_yp \(\min(y')\) rad yp
min_higher_order_energy \(\min(E_{(2)})\) eV higher_order_energy
min_r \(\min(r)\) m r
min_theta \(\min(\theta)\) rad theta
min_pr \(\min(p_r)\) eV/c pr
min_ptheta \(\min(p_{\theta})\) eV/c ptheta
min_Lz \(\min(L_z)\) m*eV/c Lz
min_gamma \(\min(\gamma)\) 1 gamma
min_beta \(\min(\beta)\) 1 beta
min_beta_x \(\min(\beta_x)\) 1 beta_x
min_beta_y \(\min(\beta_y)\) 1 beta_y
min_beta_z \(\min(\beta_z)\) 1 beta_z
min_x_bar \(\min(\overline{x})\) sqrt(m) x_bar
min_px_bar \(\min(\overline{p_x})\) sqrt(m) px_bar
min_Jx \(\min(J_x)\) m Jx
min_Jy \(\min(J_y)\) m Jy

Maximum

Maximum value of base quantities.

Label Symbol Units Base
max_x \(\max(x)\) m x
max_y \(\max(y)\) m y
max_z \(\max(z)\) m z
max_px \(\max(p_x)\) eV/c px
max_py \(\max(p_y)\) eV/c py
max_pz \(\max(p_z)\) eV/c pz
max_t \(\max(t)\) s t
max_status \(\max(\text{status})\) 1 status
max_weight \(\max(w)\) C weight
max_id \(\max(\text{id})\) 1 id
max_z/c \(\max(z/c)\) s z/c
max_p \(\max(p)\) eV/c p
max_energy \(\max(E)\) eV energy
max_kinetic_energy \(\max(E_\text{kinetic})\) eV kinetic_energy
max_xp \(\max(x')\) rad xp
max_yp \(\max(y')\) rad yp
max_higher_order_energy \(\max(E_{(2)})\) eV higher_order_energy
max_r \(\max(r)\) m r
max_theta \(\max(\theta)\) rad theta
max_pr \(\max(p_r)\) eV/c pr
max_ptheta \(\max(p_{\theta})\) eV/c ptheta
max_Lz \(\max(L_z)\) m*eV/c Lz
max_gamma \(\max(\gamma)\) 1 gamma
max_beta \(\max(\beta)\) 1 beta
max_beta_x \(\max(\beta_x)\) 1 beta_x
max_beta_y \(\max(\beta_y)\) 1 beta_y
max_beta_z \(\max(\beta_z)\) 1 beta_z
max_x_bar \(\max(\overline{x})\) sqrt(m) x_bar
max_px_bar \(\max(\overline{p_x})\) sqrt(m) px_bar
max_Jx \(\max(J_x)\) m Jx
max_Jy \(\max(J_y)\) m Jy

Peak-to-Peak

Peak-to-peak range (max - min) of base quantities.

Label Symbol Units Base
ptp_x \(\Delta x\) m x
ptp_y \(\Delta y\) m y
ptp_z \(\Delta z\) m z
ptp_px \(\Delta p_x\) eV/c px
ptp_py \(\Delta p_y\) eV/c py
ptp_pz \(\Delta p_z\) eV/c pz
ptp_t \(\Delta t\) s t
ptp_status \(\Delta \text{status}\) 1 status
ptp_weight \(\Delta w\) C weight
ptp_id \(\Delta \text{id}\) 1 id
ptp_z/c \(\Delta z/c\) s z/c
ptp_p \(\Delta p\) eV/c p
ptp_energy \(\Delta E\) eV energy
ptp_kinetic_energy \(\Delta E_\text{kinetic}\) eV kinetic_energy
ptp_xp \(\Delta x'\) rad xp
ptp_yp \(\Delta y'\) rad yp
ptp_higher_order_energy \(\Delta E_{(2)}\) eV higher_order_energy
ptp_r \(\Delta r\) m r
ptp_theta \(\Delta \theta\) rad theta
ptp_pr \(\Delta p_r\) eV/c pr
ptp_ptheta \(\Delta p_{\theta}\) eV/c ptheta
ptp_Lz \(\Delta L_z\) m*eV/c Lz
ptp_gamma \(\Delta \gamma\) 1 gamma
ptp_beta \(\Delta \beta\) 1 beta
ptp_beta_x \(\Delta \beta_x\) 1 beta_x
ptp_beta_y \(\Delta \beta_y\) 1 beta_y
ptp_beta_z \(\Delta \beta_z\) 1 beta_z
ptp_x_bar \(\Delta \overline{x}\) sqrt(m) x_bar
ptp_px_bar \(\Delta \overline{p_x}\) sqrt(m) px_bar
ptp_Jx \(\Delta J_x\) m Jx
ptp_Jy \(\Delta J_y\) m Jy

Delta

Deviation from mean of base quantities.

Label Symbol Units Base
delta_x \(\Delta x\) m x
delta_y \(\Delta y\) m y
delta_z \(\Delta z\) m z
delta_px \(\Delta p_x\) eV/c px
delta_py \(\Delta p_y\) eV/c py
delta_pz \(\Delta p_z\) eV/c pz
delta_t \(\Delta t\) s t
delta_status \(\Delta \text{status}\) 1 status
delta_weight \(\Delta w\) C weight
delta_id \(\Delta \text{id}\) 1 id
delta_z/c \(\Delta z/c\) s z/c
delta_p \(\Delta p\) eV/c p
delta_energy \(\Delta E\) eV energy
delta_kinetic_energy \(\Delta E_\text{kinetic}\) eV kinetic_energy
delta_xp \(\Delta x'\) rad xp
delta_yp \(\Delta y'\) rad yp
delta_higher_order_energy \(\Delta E_{(2)}\) eV higher_order_energy
delta_r \(\Delta r\) m r
delta_theta \(\Delta \theta\) rad theta
delta_pr \(\Delta p_r\) eV/c pr
delta_ptheta \(\Delta p_{\theta}\) eV/c ptheta
delta_Lz \(\Delta L_z\) m*eV/c Lz
delta_gamma \(\Delta \gamma\) 1 gamma
delta_beta \(\Delta \beta\) 1 beta
delta_beta_x \(\Delta \beta_x\) 1 beta_x
delta_beta_y \(\Delta \beta_y\) 1 beta_y
delta_beta_z \(\Delta \beta_z\) 1 beta_z
delta_x_bar \(\Delta \overline{x}\) sqrt(m) x_bar
delta_px_bar \(\Delta \overline{p_x}\) sqrt(m) px_bar
delta_Jx \(\Delta J_x\) m Jx
delta_Jy \(\Delta J_y\) m Jy

Covariances

Covariances are computed between all pairs of base array statistics.

Format: cov_{X}__{Y} where X and Y are base statistic labels.

Symbol: \(\langle X Y \rangle - \langle X \rangle \langle Y \rangle\)

Units: Product of the units of X and Y.

Available Base Keys

Covariances can be computed between any pair of these base statistics:

Key Symbol Units
x \(x\) m
y \(y\) m
z \(z\) m
px \(p_x\) eV/c
py \(p_y\) eV/c
pz \(p_z\) eV/c
t \(t\) s
status \(\text{status}\) 1
weight \(w\) C
id \(\text{id}\) 1
z/c \(z/c\) s
p \(p\) eV/c
energy \(E\) eV
kinetic_energy \(E_\text{kinetic}\) eV
xp \(x'\) rad
yp \(y'\) rad
higher_order_energy \(E_{(2)}\) eV
r \(r\) m
theta \(\theta\) rad
pr \(p_r\) eV/c
ptheta \(p_{\theta}\) eV/c
Lz \(L_z\) m*eV/c
gamma \(\gamma\) 1
beta \(\beta\) 1
beta_x \(\beta_x\) 1
beta_y \(\beta_y\) 1
beta_z \(\beta_z\) 1
x_bar \(\overline{x}\) sqrt(m)
px_bar \(\overline{p_x}\) sqrt(m)
Jx \(J_x\) m
Jy \(J_y\) m

All Covariances

Label Symbol Units
cov_x__x \(\langle x \cdot x \rangle - \langle x \rangle \langle x \rangle\) m^2
cov_x__y \(\langle x \cdot y \rangle - \langle x \rangle \langle y \rangle\) m^2
cov_x__z \(\langle x \cdot z \rangle - \langle x \rangle \langle z \rangle\) m^2
cov_x__px \(\langle x \cdot p_x \rangle - \langle x \rangle \langle p_x \rangle\) m*eV/c
cov_x__py \(\langle x \cdot p_y \rangle - \langle x \rangle \langle p_y \rangle\) m*eV/c
cov_x__pz \(\langle x \cdot p_z \rangle - \langle x \rangle \langle p_z \rangle\) m*eV/c
cov_x__t \(\langle x \cdot t \rangle - \langle x \rangle \langle t \rangle\) m*s
cov_x__status \(\langle x \cdot \text{status} \rangle - \langle x \rangle \langle \text{status} \rangle\) m
cov_x__weight \(\langle x \cdot w \rangle - \langle x \rangle \langle w \rangle\) m*C
cov_x__id \(\langle x \cdot \text{id} \rangle - \langle x \rangle \langle \text{id} \rangle\) m
cov_x__z/c \(\langle x \cdot z/c \rangle - \langle x \rangle \langle z/c \rangle\) m*s
cov_x__p \(\langle x \cdot p \rangle - \langle x \rangle \langle p \rangle\) m*eV/c
cov_x__energy \(\langle x \cdot E \rangle - \langle x \rangle \langle E \rangle\) m*eV
cov_x__kinetic_energy \(\langle x \cdot E_\text{kinetic} \rangle - \langle x \rangle \langle E_\text{kinetic} \rangle\) m*eV
cov_x__xp \(\langle x \cdot x' \rangle - \langle x \rangle \langle x' \rangle\) m*rad
cov_x__yp \(\langle x \cdot y' \rangle - \langle x \rangle \langle y' \rangle\) m*rad
cov_x__higher_order_energy \(\langle x \cdot E_{(2)} \rangle - \langle x \rangle \langle E_{(2)} \rangle\) m*eV
cov_x__r \(\langle x \cdot r \rangle - \langle x \rangle \langle r \rangle\) m^2
cov_x__theta \(\langle x \cdot \theta \rangle - \langle x \rangle \langle \theta \rangle\) m*rad
cov_x__pr \(\langle x \cdot p_r \rangle - \langle x \rangle \langle p_r \rangle\) m*eV/c
cov_x__ptheta \(\langle x \cdot p_{\theta} \rangle - \langle x \rangle \langle p_{\theta} \rangle\) m*eV/c
cov_x__Lz \(\langle x \cdot L_z \rangle - \langle x \rangle \langle L_z \rangle\) m*m*eV/c
cov_x__gamma \(\langle x \cdot \gamma \rangle - \langle x \rangle \langle \gamma \rangle\) m
cov_x__beta \(\langle x \cdot \beta \rangle - \langle x \rangle \langle \beta \rangle\) m
cov_x__beta_x \(\langle x \cdot \beta_x \rangle - \langle x \rangle \langle \beta_x \rangle\) m
cov_x__beta_y \(\langle x \cdot \beta_y \rangle - \langle x \rangle \langle \beta_y \rangle\) m
cov_x__beta_z \(\langle x \cdot \beta_z \rangle - \langle x \rangle \langle \beta_z \rangle\) m
cov_x__x_bar \(\langle x \cdot \overline{x} \rangle - \langle x \rangle \langle \overline{x} \rangle\) m*sqrt(m)
cov_x__px_bar \(\langle x \cdot \overline{p_x} \rangle - \langle x \rangle \langle \overline{p_x} \rangle\) m*sqrt(m)
cov_x__Jx \(\langle x \cdot J_x \rangle - \langle x \rangle \langle J_x \rangle\) m^2
cov_x__Jy \(\langle x \cdot J_y \rangle - \langle x \rangle \langle J_y \rangle\) m^2
cov_y__x \(\langle y \cdot x \rangle - \langle y \rangle \langle x \rangle\) m^2
cov_y__y \(\langle y \cdot y \rangle - \langle y \rangle \langle y \rangle\) m^2
cov_y__z \(\langle y \cdot z \rangle - \langle y \rangle \langle z \rangle\) m^2
cov_y__px \(\langle y \cdot p_x \rangle - \langle y \rangle \langle p_x \rangle\) m*eV/c
cov_y__py \(\langle y \cdot p_y \rangle - \langle y \rangle \langle p_y \rangle\) m*eV/c
cov_y__pz \(\langle y \cdot p_z \rangle - \langle y \rangle \langle p_z \rangle\) m*eV/c
cov_y__t \(\langle y \cdot t \rangle - \langle y \rangle \langle t \rangle\) m*s
cov_y__status \(\langle y \cdot \text{status} \rangle - \langle y \rangle \langle \text{status} \rangle\) m
cov_y__weight \(\langle y \cdot w \rangle - \langle y \rangle \langle w \rangle\) m*C
cov_y__id \(\langle y \cdot \text{id} \rangle - \langle y \rangle \langle \text{id} \rangle\) m
cov_y__z/c \(\langle y \cdot z/c \rangle - \langle y \rangle \langle z/c \rangle\) m*s
cov_y__p \(\langle y \cdot p \rangle - \langle y \rangle \langle p \rangle\) m*eV/c
cov_y__energy \(\langle y \cdot E \rangle - \langle y \rangle \langle E \rangle\) m*eV
cov_y__kinetic_energy \(\langle y \cdot E_\text{kinetic} \rangle - \langle y \rangle \langle E_\text{kinetic} \rangle\) m*eV
cov_y__xp \(\langle y \cdot x' \rangle - \langle y \rangle \langle x' \rangle\) m*rad
cov_y__yp \(\langle y \cdot y' \rangle - \langle y \rangle \langle y' \rangle\) m*rad
cov_y__higher_order_energy \(\langle y \cdot E_{(2)} \rangle - \langle y \rangle \langle E_{(2)} \rangle\) m*eV
cov_y__r \(\langle y \cdot r \rangle - \langle y \rangle \langle r \rangle\) m^2
cov_y__theta \(\langle y \cdot \theta \rangle - \langle y \rangle \langle \theta \rangle\) m*rad
cov_y__pr \(\langle y \cdot p_r \rangle - \langle y \rangle \langle p_r \rangle\) m*eV/c
cov_y__ptheta \(\langle y \cdot p_{\theta} \rangle - \langle y \rangle \langle p_{\theta} \rangle\) m*eV/c
cov_y__Lz \(\langle y \cdot L_z \rangle - \langle y \rangle \langle L_z \rangle\) m*m*eV/c
cov_y__gamma \(\langle y \cdot \gamma \rangle - \langle y \rangle \langle \gamma \rangle\) m
cov_y__beta \(\langle y \cdot \beta \rangle - \langle y \rangle \langle \beta \rangle\) m
cov_y__beta_x \(\langle y \cdot \beta_x \rangle - \langle y \rangle \langle \beta_x \rangle\) m
cov_y__beta_y \(\langle y \cdot \beta_y \rangle - \langle y \rangle \langle \beta_y \rangle\) m
cov_y__beta_z \(\langle y \cdot \beta_z \rangle - \langle y \rangle \langle \beta_z \rangle\) m
cov_y__x_bar \(\langle y \cdot \overline{x} \rangle - \langle y \rangle \langle \overline{x} \rangle\) m*sqrt(m)
cov_y__px_bar \(\langle y \cdot \overline{p_x} \rangle - \langle y \rangle \langle \overline{p_x} \rangle\) m*sqrt(m)
cov_y__Jx \(\langle y \cdot J_x \rangle - \langle y \rangle \langle J_x \rangle\) m^2
cov_y__Jy \(\langle y \cdot J_y \rangle - \langle y \rangle \langle J_y \rangle\) m^2
cov_z__x \(\langle z \cdot x \rangle - \langle z \rangle \langle x \rangle\) m^2
cov_z__y \(\langle z \cdot y \rangle - \langle z \rangle \langle y \rangle\) m^2
cov_z__z \(\langle z \cdot z \rangle - \langle z \rangle \langle z \rangle\) m^2
cov_z__px \(\langle z \cdot p_x \rangle - \langle z \rangle \langle p_x \rangle\) m*eV/c
cov_z__py \(\langle z \cdot p_y \rangle - \langle z \rangle \langle p_y \rangle\) m*eV/c
cov_z__pz \(\langle z \cdot p_z \rangle - \langle z \rangle \langle p_z \rangle\) m*eV/c
cov_z__t \(\langle z \cdot t \rangle - \langle z \rangle \langle t \rangle\) m*s
cov_z__status \(\langle z \cdot \text{status} \rangle - \langle z \rangle \langle \text{status} \rangle\) m
cov_z__weight \(\langle z \cdot w \rangle - \langle z \rangle \langle w \rangle\) m*C
cov_z__id \(\langle z \cdot \text{id} \rangle - \langle z \rangle \langle \text{id} \rangle\) m
cov_z__z/c \(\langle z \cdot z/c \rangle - \langle z \rangle \langle z/c \rangle\) m*s
cov_z__p \(\langle z \cdot p \rangle - \langle z \rangle \langle p \rangle\) m*eV/c
cov_z__energy \(\langle z \cdot E \rangle - \langle z \rangle \langle E \rangle\) m*eV
cov_z__kinetic_energy \(\langle z \cdot E_\text{kinetic} \rangle - \langle z \rangle \langle E_\text{kinetic} \rangle\) m*eV
cov_z__xp \(\langle z \cdot x' \rangle - \langle z \rangle \langle x' \rangle\) m*rad
cov_z__yp \(\langle z \cdot y' \rangle - \langle z \rangle \langle y' \rangle\) m*rad
cov_z__higher_order_energy \(\langle z \cdot E_{(2)} \rangle - \langle z \rangle \langle E_{(2)} \rangle\) m*eV
cov_z__r \(\langle z \cdot r \rangle - \langle z \rangle \langle r \rangle\) m^2
cov_z__theta \(\langle z \cdot \theta \rangle - \langle z \rangle \langle \theta \rangle\) m*rad
cov_z__pr \(\langle z \cdot p_r \rangle - \langle z \rangle \langle p_r \rangle\) m*eV/c
cov_z__ptheta \(\langle z \cdot p_{\theta} \rangle - \langle z \rangle \langle p_{\theta} \rangle\) m*eV/c
cov_z__Lz \(\langle z \cdot L_z \rangle - \langle z \rangle \langle L_z \rangle\) m*m*eV/c
cov_z__gamma \(\langle z \cdot \gamma \rangle - \langle z \rangle \langle \gamma \rangle\) m
cov_z__beta \(\langle z \cdot \beta \rangle - \langle z \rangle \langle \beta \rangle\) m
cov_z__beta_x \(\langle z \cdot \beta_x \rangle - \langle z \rangle \langle \beta_x \rangle\) m
cov_z__beta_y \(\langle z \cdot \beta_y \rangle - \langle z \rangle \langle \beta_y \rangle\) m
cov_z__beta_z \(\langle z \cdot \beta_z \rangle - \langle z \rangle \langle \beta_z \rangle\) m
cov_z__x_bar \(\langle z \cdot \overline{x} \rangle - \langle z \rangle \langle \overline{x} \rangle\) m*sqrt(m)
cov_z__px_bar \(\langle z \cdot \overline{p_x} \rangle - \langle z \rangle \langle \overline{p_x} \rangle\) m*sqrt(m)
cov_z__Jx \(\langle z \cdot J_x \rangle - \langle z \rangle \langle J_x \rangle\) m^2
cov_z__Jy \(\langle z \cdot J_y \rangle - \langle z \rangle \langle J_y \rangle\) m^2
cov_px__x \(\langle p_x \cdot x \rangle - \langle p_x \rangle \langle x \rangle\) eV/c*m
cov_px__y \(\langle p_x \cdot y \rangle - \langle p_x \rangle \langle y \rangle\) eV/c*m
cov_px__z \(\langle p_x \cdot z \rangle - \langle p_x \rangle \langle z \rangle\) eV/c*m
cov_px__px \(\langle p_x \cdot p_x \rangle - \langle p_x \rangle \langle p_x \rangle\) eV/c^2
cov_px__py \(\langle p_x \cdot p_y \rangle - \langle p_x \rangle \langle p_y \rangle\) eV/c^2
cov_px__pz \(\langle p_x \cdot p_z \rangle - \langle p_x \rangle \langle p_z \rangle\) eV/c^2
cov_px__t \(\langle p_x \cdot t \rangle - \langle p_x \rangle \langle t \rangle\) eV/c*s
cov_px__status \(\langle p_x \cdot \text{status} \rangle - \langle p_x \rangle \langle \text{status} \rangle\) eV/c
cov_px__weight \(\langle p_x \cdot w \rangle - \langle p_x \rangle \langle w \rangle\) eV/c*C
cov_px__id \(\langle p_x \cdot \text{id} \rangle - \langle p_x \rangle \langle \text{id} \rangle\) eV/c
cov_px__z/c \(\langle p_x \cdot z/c \rangle - \langle p_x \rangle \langle z/c \rangle\) eV/c*s
cov_px__p \(\langle p_x \cdot p \rangle - \langle p_x \rangle \langle p \rangle\) eV/c^2
cov_px__energy \(\langle p_x \cdot E \rangle - \langle p_x \rangle \langle E \rangle\) eV/c*eV
cov_px__kinetic_energy \(\langle p_x \cdot E_\text{kinetic} \rangle - \langle p_x \rangle \langle E_\text{kinetic} \rangle\) eV/c*eV
cov_px__xp \(\langle p_x \cdot x' \rangle - \langle p_x \rangle \langle x' \rangle\) eV/c*rad
cov_px__yp \(\langle p_x \cdot y' \rangle - \langle p_x \rangle \langle y' \rangle\) eV/c*rad
cov_px__higher_order_energy \(\langle p_x \cdot E_{(2)} \rangle - \langle p_x \rangle \langle E_{(2)} \rangle\) eV/c*eV
cov_px__r \(\langle p_x \cdot r \rangle - \langle p_x \rangle \langle r \rangle\) eV/c*m
cov_px__theta \(\langle p_x \cdot \theta \rangle - \langle p_x \rangle \langle \theta \rangle\) eV/c*rad
cov_px__pr \(\langle p_x \cdot p_r \rangle - \langle p_x \rangle \langle p_r \rangle\) eV/c^2
cov_px__ptheta \(\langle p_x \cdot p_{\theta} \rangle - \langle p_x \rangle \langle p_{\theta} \rangle\) eV/c^2
cov_px__Lz \(\langle p_x \cdot L_z \rangle - \langle p_x \rangle \langle L_z \rangle\) eV/c*m*eV/c
cov_px__gamma \(\langle p_x \cdot \gamma \rangle - \langle p_x \rangle \langle \gamma \rangle\) eV/c
cov_px__beta \(\langle p_x \cdot \beta \rangle - \langle p_x \rangle \langle \beta \rangle\) eV/c
cov_px__beta_x \(\langle p_x \cdot \beta_x \rangle - \langle p_x \rangle \langle \beta_x \rangle\) eV/c
cov_px__beta_y \(\langle p_x \cdot \beta_y \rangle - \langle p_x \rangle \langle \beta_y \rangle\) eV/c
cov_px__beta_z \(\langle p_x \cdot \beta_z \rangle - \langle p_x \rangle \langle \beta_z \rangle\) eV/c
cov_px__x_bar \(\langle p_x \cdot \overline{x} \rangle - \langle p_x \rangle \langle \overline{x} \rangle\) eV/c*sqrt(m)
cov_px__px_bar \(\langle p_x \cdot \overline{p_x} \rangle - \langle p_x \rangle \langle \overline{p_x} \rangle\) eV/c*sqrt(m)
cov_px__Jx \(\langle p_x \cdot J_x \rangle - \langle p_x \rangle \langle J_x \rangle\) eV/c*m
cov_px__Jy \(\langle p_x \cdot J_y \rangle - \langle p_x \rangle \langle J_y \rangle\) eV/c*m
cov_py__x \(\langle p_y \cdot x \rangle - \langle p_y \rangle \langle x \rangle\) eV/c*m
cov_py__y \(\langle p_y \cdot y \rangle - \langle p_y \rangle \langle y \rangle\) eV/c*m
cov_py__z \(\langle p_y \cdot z \rangle - \langle p_y \rangle \langle z \rangle\) eV/c*m
cov_py__px \(\langle p_y \cdot p_x \rangle - \langle p_y \rangle \langle p_x \rangle\) eV/c^2
cov_py__py \(\langle p_y \cdot p_y \rangle - \langle p_y \rangle \langle p_y \rangle\) eV/c^2
cov_py__pz \(\langle p_y \cdot p_z \rangle - \langle p_y \rangle \langle p_z \rangle\) eV/c^2
cov_py__t \(\langle p_y \cdot t \rangle - \langle p_y \rangle \langle t \rangle\) eV/c*s
cov_py__status \(\langle p_y \cdot \text{status} \rangle - \langle p_y \rangle \langle \text{status} \rangle\) eV/c
cov_py__weight \(\langle p_y \cdot w \rangle - \langle p_y \rangle \langle w \rangle\) eV/c*C
cov_py__id \(\langle p_y \cdot \text{id} \rangle - \langle p_y \rangle \langle \text{id} \rangle\) eV/c
cov_py__z/c \(\langle p_y \cdot z/c \rangle - \langle p_y \rangle \langle z/c \rangle\) eV/c*s
cov_py__p \(\langle p_y \cdot p \rangle - \langle p_y \rangle \langle p \rangle\) eV/c^2
cov_py__energy \(\langle p_y \cdot E \rangle - \langle p_y \rangle \langle E \rangle\) eV/c*eV
cov_py__kinetic_energy \(\langle p_y \cdot E_\text{kinetic} \rangle - \langle p_y \rangle \langle E_\text{kinetic} \rangle\) eV/c*eV
cov_py__xp \(\langle p_y \cdot x' \rangle - \langle p_y \rangle \langle x' \rangle\) eV/c*rad
cov_py__yp \(\langle p_y \cdot y' \rangle - \langle p_y \rangle \langle y' \rangle\) eV/c*rad
cov_py__higher_order_energy \(\langle p_y \cdot E_{(2)} \rangle - \langle p_y \rangle \langle E_{(2)} \rangle\) eV/c*eV
cov_py__r \(\langle p_y \cdot r \rangle - \langle p_y \rangle \langle r \rangle\) eV/c*m
cov_py__theta \(\langle p_y \cdot \theta \rangle - \langle p_y \rangle \langle \theta \rangle\) eV/c*rad
cov_py__pr \(\langle p_y \cdot p_r \rangle - \langle p_y \rangle \langle p_r \rangle\) eV/c^2
cov_py__ptheta \(\langle p_y \cdot p_{\theta} \rangle - \langle p_y \rangle \langle p_{\theta} \rangle\) eV/c^2
cov_py__Lz \(\langle p_y \cdot L_z \rangle - \langle p_y \rangle \langle L_z \rangle\) eV/c*m*eV/c
cov_py__gamma \(\langle p_y \cdot \gamma \rangle - \langle p_y \rangle \langle \gamma \rangle\) eV/c
cov_py__beta \(\langle p_y \cdot \beta \rangle - \langle p_y \rangle \langle \beta \rangle\) eV/c
cov_py__beta_x \(\langle p_y \cdot \beta_x \rangle - \langle p_y \rangle \langle \beta_x \rangle\) eV/c
cov_py__beta_y \(\langle p_y \cdot \beta_y \rangle - \langle p_y \rangle \langle \beta_y \rangle\) eV/c
cov_py__beta_z \(\langle p_y \cdot \beta_z \rangle - \langle p_y \rangle \langle \beta_z \rangle\) eV/c
cov_py__x_bar \(\langle p_y \cdot \overline{x} \rangle - \langle p_y \rangle \langle \overline{x} \rangle\) eV/c*sqrt(m)
cov_py__px_bar \(\langle p_y \cdot \overline{p_x} \rangle - \langle p_y \rangle \langle \overline{p_x} \rangle\) eV/c*sqrt(m)
cov_py__Jx \(\langle p_y \cdot J_x \rangle - \langle p_y \rangle \langle J_x \rangle\) eV/c*m
cov_py__Jy \(\langle p_y \cdot J_y \rangle - \langle p_y \rangle \langle J_y \rangle\) eV/c*m
cov_pz__x \(\langle p_z \cdot x \rangle - \langle p_z \rangle \langle x \rangle\) eV/c*m
cov_pz__y \(\langle p_z \cdot y \rangle - \langle p_z \rangle \langle y \rangle\) eV/c*m
cov_pz__z \(\langle p_z \cdot z \rangle - \langle p_z \rangle \langle z \rangle\) eV/c*m
cov_pz__px \(\langle p_z \cdot p_x \rangle - \langle p_z \rangle \langle p_x \rangle\) eV/c^2
cov_pz__py \(\langle p_z \cdot p_y \rangle - \langle p_z \rangle \langle p_y \rangle\) eV/c^2
cov_pz__pz \(\langle p_z \cdot p_z \rangle - \langle p_z \rangle \langle p_z \rangle\) eV/c^2
cov_pz__t \(\langle p_z \cdot t \rangle - \langle p_z \rangle \langle t \rangle\) eV/c*s
cov_pz__status \(\langle p_z \cdot \text{status} \rangle - \langle p_z \rangle \langle \text{status} \rangle\) eV/c
cov_pz__weight \(\langle p_z \cdot w \rangle - \langle p_z \rangle \langle w \rangle\) eV/c*C
cov_pz__id \(\langle p_z \cdot \text{id} \rangle - \langle p_z \rangle \langle \text{id} \rangle\) eV/c
cov_pz__z/c \(\langle p_z \cdot z/c \rangle - \langle p_z \rangle \langle z/c \rangle\) eV/c*s
cov_pz__p \(\langle p_z \cdot p \rangle - \langle p_z \rangle \langle p \rangle\) eV/c^2
cov_pz__energy \(\langle p_z \cdot E \rangle - \langle p_z \rangle \langle E \rangle\) eV/c*eV
cov_pz__kinetic_energy \(\langle p_z \cdot E_\text{kinetic} \rangle - \langle p_z \rangle \langle E_\text{kinetic} \rangle\) eV/c*eV
cov_pz__xp \(\langle p_z \cdot x' \rangle - \langle p_z \rangle \langle x' \rangle\) eV/c*rad
cov_pz__yp \(\langle p_z \cdot y' \rangle - \langle p_z \rangle \langle y' \rangle\) eV/c*rad
cov_pz__higher_order_energy \(\langle p_z \cdot E_{(2)} \rangle - \langle p_z \rangle \langle E_{(2)} \rangle\) eV/c*eV
cov_pz__r \(\langle p_z \cdot r \rangle - \langle p_z \rangle \langle r \rangle\) eV/c*m
cov_pz__theta \(\langle p_z \cdot \theta \rangle - \langle p_z \rangle \langle \theta \rangle\) eV/c*rad
cov_pz__pr \(\langle p_z \cdot p_r \rangle - \langle p_z \rangle \langle p_r \rangle\) eV/c^2
cov_pz__ptheta \(\langle p_z \cdot p_{\theta} \rangle - \langle p_z \rangle \langle p_{\theta} \rangle\) eV/c^2
cov_pz__Lz \(\langle p_z \cdot L_z \rangle - \langle p_z \rangle \langle L_z \rangle\) eV/c*m*eV/c
cov_pz__gamma \(\langle p_z \cdot \gamma \rangle - \langle p_z \rangle \langle \gamma \rangle\) eV/c
cov_pz__beta \(\langle p_z \cdot \beta \rangle - \langle p_z \rangle \langle \beta \rangle\) eV/c
cov_pz__beta_x \(\langle p_z \cdot \beta_x \rangle - \langle p_z \rangle \langle \beta_x \rangle\) eV/c
cov_pz__beta_y \(\langle p_z \cdot \beta_y \rangle - \langle p_z \rangle \langle \beta_y \rangle\) eV/c
cov_pz__beta_z \(\langle p_z \cdot \beta_z \rangle - \langle p_z \rangle \langle \beta_z \rangle\) eV/c
cov_pz__x_bar \(\langle p_z \cdot \overline{x} \rangle - \langle p_z \rangle \langle \overline{x} \rangle\) eV/c*sqrt(m)
cov_pz__px_bar \(\langle p_z \cdot \overline{p_x} \rangle - \langle p_z \rangle \langle \overline{p_x} \rangle\) eV/c*sqrt(m)
cov_pz__Jx \(\langle p_z \cdot J_x \rangle - \langle p_z \rangle \langle J_x \rangle\) eV/c*m
cov_pz__Jy \(\langle p_z \cdot J_y \rangle - \langle p_z \rangle \langle J_y \rangle\) eV/c*m
cov_t__x \(\langle t \cdot x \rangle - \langle t \rangle \langle x \rangle\) s*m
cov_t__y \(\langle t \cdot y \rangle - \langle t \rangle \langle y \rangle\) s*m
cov_t__z \(\langle t \cdot z \rangle - \langle t \rangle \langle z \rangle\) s*m
cov_t__px \(\langle t \cdot p_x \rangle - \langle t \rangle \langle p_x \rangle\) s*eV/c
cov_t__py \(\langle t \cdot p_y \rangle - \langle t \rangle \langle p_y \rangle\) s*eV/c
cov_t__pz \(\langle t \cdot p_z \rangle - \langle t \rangle \langle p_z \rangle\) s*eV/c
cov_t__t \(\langle t \cdot t \rangle - \langle t \rangle \langle t \rangle\) s^2
cov_t__status \(\langle t \cdot \text{status} \rangle - \langle t \rangle \langle \text{status} \rangle\) s
cov_t__weight \(\langle t \cdot w \rangle - \langle t \rangle \langle w \rangle\) s*C
cov_t__id \(\langle t \cdot \text{id} \rangle - \langle t \rangle \langle \text{id} \rangle\) s
cov_t__z/c \(\langle t \cdot z/c \rangle - \langle t \rangle \langle z/c \rangle\) s^2
cov_t__p \(\langle t \cdot p \rangle - \langle t \rangle \langle p \rangle\) s*eV/c
cov_t__energy \(\langle t \cdot E \rangle - \langle t \rangle \langle E \rangle\) s*eV
cov_t__kinetic_energy \(\langle t \cdot E_\text{kinetic} \rangle - \langle t \rangle \langle E_\text{kinetic} \rangle\) s*eV
cov_t__xp \(\langle t \cdot x' \rangle - \langle t \rangle \langle x' \rangle\) s*rad
cov_t__yp \(\langle t \cdot y' \rangle - \langle t \rangle \langle y' \rangle\) s*rad
cov_t__higher_order_energy \(\langle t \cdot E_{(2)} \rangle - \langle t \rangle \langle E_{(2)} \rangle\) s*eV
cov_t__r \(\langle t \cdot r \rangle - \langle t \rangle \langle r \rangle\) s*m
cov_t__theta \(\langle t \cdot \theta \rangle - \langle t \rangle \langle \theta \rangle\) s*rad
cov_t__pr \(\langle t \cdot p_r \rangle - \langle t \rangle \langle p_r \rangle\) s*eV/c
cov_t__ptheta \(\langle t \cdot p_{\theta} \rangle - \langle t \rangle \langle p_{\theta} \rangle\) s*eV/c
cov_t__Lz \(\langle t \cdot L_z \rangle - \langle t \rangle \langle L_z \rangle\) s*m*eV/c
cov_t__gamma \(\langle t \cdot \gamma \rangle - \langle t \rangle \langle \gamma \rangle\) s
cov_t__beta \(\langle t \cdot \beta \rangle - \langle t \rangle \langle \beta \rangle\) s
cov_t__beta_x \(\langle t \cdot \beta_x \rangle - \langle t \rangle \langle \beta_x \rangle\) s
cov_t__beta_y \(\langle t \cdot \beta_y \rangle - \langle t \rangle \langle \beta_y \rangle\) s
cov_t__beta_z \(\langle t \cdot \beta_z \rangle - \langle t \rangle \langle \beta_z \rangle\) s
cov_t__x_bar \(\langle t \cdot \overline{x} \rangle - \langle t \rangle \langle \overline{x} \rangle\) s*sqrt(m)
cov_t__px_bar \(\langle t \cdot \overline{p_x} \rangle - \langle t \rangle \langle \overline{p_x} \rangle\) s*sqrt(m)
cov_t__Jx \(\langle t \cdot J_x \rangle - \langle t \rangle \langle J_x \rangle\) s*m
cov_t__Jy \(\langle t \cdot J_y \rangle - \langle t \rangle \langle J_y \rangle\) s*m
cov_status__x \(\langle \text{status} \cdot x \rangle - \langle \text{status} \rangle \langle x \rangle\) m
cov_status__y \(\langle \text{status} \cdot y \rangle - \langle \text{status} \rangle \langle y \rangle\) m
cov_status__z \(\langle \text{status} \cdot z \rangle - \langle \text{status} \rangle \langle z \rangle\) m
cov_status__px \(\langle \text{status} \cdot p_x \rangle - \langle \text{status} \rangle \langle p_x \rangle\) eV/c
cov_status__py \(\langle \text{status} \cdot p_y \rangle - \langle \text{status} \rangle \langle p_y \rangle\) eV/c
cov_status__pz \(\langle \text{status} \cdot p_z \rangle - \langle \text{status} \rangle \langle p_z \rangle\) eV/c
cov_status__t \(\langle \text{status} \cdot t \rangle - \langle \text{status} \rangle \langle t \rangle\) s
cov_status__status \(\langle \text{status} \cdot \text{status} \rangle - \langle \text{status} \rangle \langle \text{status} \rangle\) 1
cov_status__weight \(\langle \text{status} \cdot w \rangle - \langle \text{status} \rangle \langle w \rangle\) C
cov_status__id \(\langle \text{status} \cdot \text{id} \rangle - \langle \text{status} \rangle \langle \text{id} \rangle\) 1
cov_status__z/c \(\langle \text{status} \cdot z/c \rangle - \langle \text{status} \rangle \langle z/c \rangle\) s
cov_status__p \(\langle \text{status} \cdot p \rangle - \langle \text{status} \rangle \langle p \rangle\) eV/c
cov_status__energy \(\langle \text{status} \cdot E \rangle - \langle \text{status} \rangle \langle E \rangle\) eV
cov_status__kinetic_energy \(\langle \text{status} \cdot E_\text{kinetic} \rangle - \langle \text{status} \rangle \langle E_\text{kinetic} \rangle\) eV
cov_status__xp \(\langle \text{status} \cdot x' \rangle - \langle \text{status} \rangle \langle x' \rangle\) rad
cov_status__yp \(\langle \text{status} \cdot y' \rangle - \langle \text{status} \rangle \langle y' \rangle\) rad
cov_status__higher_order_energy \(\langle \text{status} \cdot E_{(2)} \rangle - \langle \text{status} \rangle \langle E_{(2)} \rangle\) eV
cov_status__r \(\langle \text{status} \cdot r \rangle - \langle \text{status} \rangle \langle r \rangle\) m
cov_status__theta \(\langle \text{status} \cdot \theta \rangle - \langle \text{status} \rangle \langle \theta \rangle\) rad
cov_status__pr \(\langle \text{status} \cdot p_r \rangle - \langle \text{status} \rangle \langle p_r \rangle\) eV/c
cov_status__ptheta \(\langle \text{status} \cdot p_{\theta} \rangle - \langle \text{status} \rangle \langle p_{\theta} \rangle\) eV/c
cov_status__Lz \(\langle \text{status} \cdot L_z \rangle - \langle \text{status} \rangle \langle L_z \rangle\) m*eV/c
cov_status__gamma \(\langle \text{status} \cdot \gamma \rangle - \langle \text{status} \rangle \langle \gamma \rangle\) 1
cov_status__beta \(\langle \text{status} \cdot \beta \rangle - \langle \text{status} \rangle \langle \beta \rangle\) 1
cov_status__beta_x \(\langle \text{status} \cdot \beta_x \rangle - \langle \text{status} \rangle \langle \beta_x \rangle\) 1
cov_status__beta_y \(\langle \text{status} \cdot \beta_y \rangle - \langle \text{status} \rangle \langle \beta_y \rangle\) 1
cov_status__beta_z \(\langle \text{status} \cdot \beta_z \rangle - \langle \text{status} \rangle \langle \beta_z \rangle\) 1
cov_status__x_bar \(\langle \text{status} \cdot \overline{x} \rangle - \langle \text{status} \rangle \langle \overline{x} \rangle\) sqrt(m)
cov_status__px_bar \(\langle \text{status} \cdot \overline{p_x} \rangle - \langle \text{status} \rangle \langle \overline{p_x} \rangle\) sqrt(m)
cov_status__Jx \(\langle \text{status} \cdot J_x \rangle - \langle \text{status} \rangle \langle J_x \rangle\) m
cov_status__Jy \(\langle \text{status} \cdot J_y \rangle - \langle \text{status} \rangle \langle J_y \rangle\) m
cov_weight__x \(\langle w \cdot x \rangle - \langle w \rangle \langle x \rangle\) C*m
cov_weight__y \(\langle w \cdot y \rangle - \langle w \rangle \langle y \rangle\) C*m
cov_weight__z \(\langle w \cdot z \rangle - \langle w \rangle \langle z \rangle\) C*m
cov_weight__px \(\langle w \cdot p_x \rangle - \langle w \rangle \langle p_x \rangle\) C*eV/c
cov_weight__py \(\langle w \cdot p_y \rangle - \langle w \rangle \langle p_y \rangle\) C*eV/c
cov_weight__pz \(\langle w \cdot p_z \rangle - \langle w \rangle \langle p_z \rangle\) C*eV/c
cov_weight__t \(\langle w \cdot t \rangle - \langle w \rangle \langle t \rangle\) C*s
cov_weight__status \(\langle w \cdot \text{status} \rangle - \langle w \rangle \langle \text{status} \rangle\) C
cov_weight__weight \(\langle w \cdot w \rangle - \langle w \rangle \langle w \rangle\) C^2
cov_weight__id \(\langle w \cdot \text{id} \rangle - \langle w \rangle \langle \text{id} \rangle\) C
cov_weight__z/c \(\langle w \cdot z/c \rangle - \langle w \rangle \langle z/c \rangle\) C*s
cov_weight__p \(\langle w \cdot p \rangle - \langle w \rangle \langle p \rangle\) C*eV/c
cov_weight__energy \(\langle w \cdot E \rangle - \langle w \rangle \langle E \rangle\) C*eV
cov_weight__kinetic_energy \(\langle w \cdot E_\text{kinetic} \rangle - \langle w \rangle \langle E_\text{kinetic} \rangle\) C*eV
cov_weight__xp \(\langle w \cdot x' \rangle - \langle w \rangle \langle x' \rangle\) C*rad
cov_weight__yp \(\langle w \cdot y' \rangle - \langle w \rangle \langle y' \rangle\) C*rad
cov_weight__higher_order_energy \(\langle w \cdot E_{(2)} \rangle - \langle w \rangle \langle E_{(2)} \rangle\) C*eV
cov_weight__r \(\langle w \cdot r \rangle - \langle w \rangle \langle r \rangle\) C*m
cov_weight__theta \(\langle w \cdot \theta \rangle - \langle w \rangle \langle \theta \rangle\) C*rad
cov_weight__pr \(\langle w \cdot p_r \rangle - \langle w \rangle \langle p_r \rangle\) C*eV/c
cov_weight__ptheta \(\langle w \cdot p_{\theta} \rangle - \langle w \rangle \langle p_{\theta} \rangle\) C*eV/c
cov_weight__Lz \(\langle w \cdot L_z \rangle - \langle w \rangle \langle L_z \rangle\) C*m*eV/c
cov_weight__gamma \(\langle w \cdot \gamma \rangle - \langle w \rangle \langle \gamma \rangle\) C
cov_weight__beta \(\langle w \cdot \beta \rangle - \langle w \rangle \langle \beta \rangle\) C
cov_weight__beta_x \(\langle w \cdot \beta_x \rangle - \langle w \rangle \langle \beta_x \rangle\) C
cov_weight__beta_y \(\langle w \cdot \beta_y \rangle - \langle w \rangle \langle \beta_y \rangle\) C
cov_weight__beta_z \(\langle w \cdot \beta_z \rangle - \langle w \rangle \langle \beta_z \rangle\) C
cov_weight__x_bar \(\langle w \cdot \overline{x} \rangle - \langle w \rangle \langle \overline{x} \rangle\) C*sqrt(m)
cov_weight__px_bar \(\langle w \cdot \overline{p_x} \rangle - \langle w \rangle \langle \overline{p_x} \rangle\) C*sqrt(m)
cov_weight__Jx \(\langle w \cdot J_x \rangle - \langle w \rangle \langle J_x \rangle\) C*m
cov_weight__Jy \(\langle w \cdot J_y \rangle - \langle w \rangle \langle J_y \rangle\) C*m
cov_id__x \(\langle \text{id} \cdot x \rangle - \langle \text{id} \rangle \langle x \rangle\) m
cov_id__y \(\langle \text{id} \cdot y \rangle - \langle \text{id} \rangle \langle y \rangle\) m
cov_id__z \(\langle \text{id} \cdot z \rangle - \langle \text{id} \rangle \langle z \rangle\) m
cov_id__px \(\langle \text{id} \cdot p_x \rangle - \langle \text{id} \rangle \langle p_x \rangle\) eV/c
cov_id__py \(\langle \text{id} \cdot p_y \rangle - \langle \text{id} \rangle \langle p_y \rangle\) eV/c
cov_id__pz \(\langle \text{id} \cdot p_z \rangle - \langle \text{id} \rangle \langle p_z \rangle\) eV/c
cov_id__t \(\langle \text{id} \cdot t \rangle - \langle \text{id} \rangle \langle t \rangle\) s
cov_id__status \(\langle \text{id} \cdot \text{status} \rangle - \langle \text{id} \rangle \langle \text{status} \rangle\) 1
cov_id__weight \(\langle \text{id} \cdot w \rangle - \langle \text{id} \rangle \langle w \rangle\) C
cov_id__id \(\langle \text{id} \cdot \text{id} \rangle - \langle \text{id} \rangle \langle \text{id} \rangle\) 1
cov_id__z/c \(\langle \text{id} \cdot z/c \rangle - \langle \text{id} \rangle \langle z/c \rangle\) s
cov_id__p \(\langle \text{id} \cdot p \rangle - \langle \text{id} \rangle \langle p \rangle\) eV/c
cov_id__energy \(\langle \text{id} \cdot E \rangle - \langle \text{id} \rangle \langle E \rangle\) eV
cov_id__kinetic_energy \(\langle \text{id} \cdot E_\text{kinetic} \rangle - \langle \text{id} \rangle \langle E_\text{kinetic} \rangle\) eV
cov_id__xp \(\langle \text{id} \cdot x' \rangle - \langle \text{id} \rangle \langle x' \rangle\) rad
cov_id__yp \(\langle \text{id} \cdot y' \rangle - \langle \text{id} \rangle \langle y' \rangle\) rad
cov_id__higher_order_energy \(\langle \text{id} \cdot E_{(2)} \rangle - \langle \text{id} \rangle \langle E_{(2)} \rangle\) eV
cov_id__r \(\langle \text{id} \cdot r \rangle - \langle \text{id} \rangle \langle r \rangle\) m
cov_id__theta \(\langle \text{id} \cdot \theta \rangle - \langle \text{id} \rangle \langle \theta \rangle\) rad
cov_id__pr \(\langle \text{id} \cdot p_r \rangle - \langle \text{id} \rangle \langle p_r \rangle\) eV/c
cov_id__ptheta \(\langle \text{id} \cdot p_{\theta} \rangle - \langle \text{id} \rangle \langle p_{\theta} \rangle\) eV/c
cov_id__Lz \(\langle \text{id} \cdot L_z \rangle - \langle \text{id} \rangle \langle L_z \rangle\) m*eV/c
cov_id__gamma \(\langle \text{id} \cdot \gamma \rangle - \langle \text{id} \rangle \langle \gamma \rangle\) 1
cov_id__beta \(\langle \text{id} \cdot \beta \rangle - \langle \text{id} \rangle \langle \beta \rangle\) 1
cov_id__beta_x \(\langle \text{id} \cdot \beta_x \rangle - \langle \text{id} \rangle \langle \beta_x \rangle\) 1
cov_id__beta_y \(\langle \text{id} \cdot \beta_y \rangle - \langle \text{id} \rangle \langle \beta_y \rangle\) 1
cov_id__beta_z \(\langle \text{id} \cdot \beta_z \rangle - \langle \text{id} \rangle \langle \beta_z \rangle\) 1
cov_id__x_bar \(\langle \text{id} \cdot \overline{x} \rangle - \langle \text{id} \rangle \langle \overline{x} \rangle\) sqrt(m)
cov_id__px_bar \(\langle \text{id} \cdot \overline{p_x} \rangle - \langle \text{id} \rangle \langle \overline{p_x} \rangle\) sqrt(m)
cov_id__Jx \(\langle \text{id} \cdot J_x \rangle - \langle \text{id} \rangle \langle J_x \rangle\) m
cov_id__Jy \(\langle \text{id} \cdot J_y \rangle - \langle \text{id} \rangle \langle J_y \rangle\) m
cov_z/c__x \(\langle z/c \cdot x \rangle - \langle z/c \rangle \langle x \rangle\) s*m
cov_z/c__y \(\langle z/c \cdot y \rangle - \langle z/c \rangle \langle y \rangle\) s*m
cov_z/c__z \(\langle z/c \cdot z \rangle - \langle z/c \rangle \langle z \rangle\) s*m
cov_z/c__px \(\langle z/c \cdot p_x \rangle - \langle z/c \rangle \langle p_x \rangle\) s*eV/c
cov_z/c__py \(\langle z/c \cdot p_y \rangle - \langle z/c \rangle \langle p_y \rangle\) s*eV/c
cov_z/c__pz \(\langle z/c \cdot p_z \rangle - \langle z/c \rangle \langle p_z \rangle\) s*eV/c
cov_z/c__t \(\langle z/c \cdot t \rangle - \langle z/c \rangle \langle t \rangle\) s^2
cov_z/c__status \(\langle z/c \cdot \text{status} \rangle - \langle z/c \rangle \langle \text{status} \rangle\) s
cov_z/c__weight \(\langle z/c \cdot w \rangle - \langle z/c \rangle \langle w \rangle\) s*C
cov_z/c__id \(\langle z/c \cdot \text{id} \rangle - \langle z/c \rangle \langle \text{id} \rangle\) s
cov_z/c__z/c \(\langle z/c \cdot z/c \rangle - \langle z/c \rangle \langle z/c \rangle\) s^2
cov_z/c__p \(\langle z/c \cdot p \rangle - \langle z/c \rangle \langle p \rangle\) s*eV/c
cov_z/c__energy \(\langle z/c \cdot E \rangle - \langle z/c \rangle \langle E \rangle\) s*eV
cov_z/c__kinetic_energy \(\langle z/c \cdot E_\text{kinetic} \rangle - \langle z/c \rangle \langle E_\text{kinetic} \rangle\) s*eV
cov_z/c__xp \(\langle z/c \cdot x' \rangle - \langle z/c \rangle \langle x' \rangle\) s*rad
cov_z/c__yp \(\langle z/c \cdot y' \rangle - \langle z/c \rangle \langle y' \rangle\) s*rad
cov_z/c__higher_order_energy \(\langle z/c \cdot E_{(2)} \rangle - \langle z/c \rangle \langle E_{(2)} \rangle\) s*eV
cov_z/c__r \(\langle z/c \cdot r \rangle - \langle z/c \rangle \langle r \rangle\) s*m
cov_z/c__theta \(\langle z/c \cdot \theta \rangle - \langle z/c \rangle \langle \theta \rangle\) s*rad
cov_z/c__pr \(\langle z/c \cdot p_r \rangle - \langle z/c \rangle \langle p_r \rangle\) s*eV/c
cov_z/c__ptheta \(\langle z/c \cdot p_{\theta} \rangle - \langle z/c \rangle \langle p_{\theta} \rangle\) s*eV/c
cov_z/c__Lz \(\langle z/c \cdot L_z \rangle - \langle z/c \rangle \langle L_z \rangle\) s*m*eV/c
cov_z/c__gamma \(\langle z/c \cdot \gamma \rangle - \langle z/c \rangle \langle \gamma \rangle\) s
cov_z/c__beta \(\langle z/c \cdot \beta \rangle - \langle z/c \rangle \langle \beta \rangle\) s
cov_z/c__beta_x \(\langle z/c \cdot \beta_x \rangle - \langle z/c \rangle \langle \beta_x \rangle\) s
cov_z/c__beta_y \(\langle z/c \cdot \beta_y \rangle - \langle z/c \rangle \langle \beta_y \rangle\) s
cov_z/c__beta_z \(\langle z/c \cdot \beta_z \rangle - \langle z/c \rangle \langle \beta_z \rangle\) s
cov_z/c__x_bar \(\langle z/c \cdot \overline{x} \rangle - \langle z/c \rangle \langle \overline{x} \rangle\) s*sqrt(m)
cov_z/c__px_bar \(\langle z/c \cdot \overline{p_x} \rangle - \langle z/c \rangle \langle \overline{p_x} \rangle\) s*sqrt(m)
cov_z/c__Jx \(\langle z/c \cdot J_x \rangle - \langle z/c \rangle \langle J_x \rangle\) s*m
cov_z/c__Jy \(\langle z/c \cdot J_y \rangle - \langle z/c \rangle \langle J_y \rangle\) s*m
cov_p__x \(\langle p \cdot x \rangle - \langle p \rangle \langle x \rangle\) eV/c*m
cov_p__y \(\langle p \cdot y \rangle - \langle p \rangle \langle y \rangle\) eV/c*m
cov_p__z \(\langle p \cdot z \rangle - \langle p \rangle \langle z \rangle\) eV/c*m
cov_p__px \(\langle p \cdot p_x \rangle - \langle p \rangle \langle p_x \rangle\) eV/c^2
cov_p__py \(\langle p \cdot p_y \rangle - \langle p \rangle \langle p_y \rangle\) eV/c^2
cov_p__pz \(\langle p \cdot p_z \rangle - \langle p \rangle \langle p_z \rangle\) eV/c^2
cov_p__t \(\langle p \cdot t \rangle - \langle p \rangle \langle t \rangle\) eV/c*s
cov_p__status \(\langle p \cdot \text{status} \rangle - \langle p \rangle \langle \text{status} \rangle\) eV/c
cov_p__weight \(\langle p \cdot w \rangle - \langle p \rangle \langle w \rangle\) eV/c*C
cov_p__id \(\langle p \cdot \text{id} \rangle - \langle p \rangle \langle \text{id} \rangle\) eV/c
cov_p__z/c \(\langle p \cdot z/c \rangle - \langle p \rangle \langle z/c \rangle\) eV/c*s
cov_p__p \(\langle p \cdot p \rangle - \langle p \rangle \langle p \rangle\) eV/c^2
cov_p__energy \(\langle p \cdot E \rangle - \langle p \rangle \langle E \rangle\) eV/c*eV
cov_p__kinetic_energy \(\langle p \cdot E_\text{kinetic} \rangle - \langle p \rangle \langle E_\text{kinetic} \rangle\) eV/c*eV
cov_p__xp \(\langle p \cdot x' \rangle - \langle p \rangle \langle x' \rangle\) eV/c*rad
cov_p__yp \(\langle p \cdot y' \rangle - \langle p \rangle \langle y' \rangle\) eV/c*rad
cov_p__higher_order_energy \(\langle p \cdot E_{(2)} \rangle - \langle p \rangle \langle E_{(2)} \rangle\) eV/c*eV
cov_p__r \(\langle p \cdot r \rangle - \langle p \rangle \langle r \rangle\) eV/c*m
cov_p__theta \(\langle p \cdot \theta \rangle - \langle p \rangle \langle \theta \rangle\) eV/c*rad
cov_p__pr \(\langle p \cdot p_r \rangle - \langle p \rangle \langle p_r \rangle\) eV/c^2
cov_p__ptheta \(\langle p \cdot p_{\theta} \rangle - \langle p \rangle \langle p_{\theta} \rangle\) eV/c^2
cov_p__Lz \(\langle p \cdot L_z \rangle - \langle p \rangle \langle L_z \rangle\) eV/c*m*eV/c
cov_p__gamma \(\langle p \cdot \gamma \rangle - \langle p \rangle \langle \gamma \rangle\) eV/c
cov_p__beta \(\langle p \cdot \beta \rangle - \langle p \rangle \langle \beta \rangle\) eV/c
cov_p__beta_x \(\langle p \cdot \beta_x \rangle - \langle p \rangle \langle \beta_x \rangle\) eV/c
cov_p__beta_y \(\langle p \cdot \beta_y \rangle - \langle p \rangle \langle \beta_y \rangle\) eV/c
cov_p__beta_z \(\langle p \cdot \beta_z \rangle - \langle p \rangle \langle \beta_z \rangle\) eV/c
cov_p__x_bar \(\langle p \cdot \overline{x} \rangle - \langle p \rangle \langle \overline{x} \rangle\) eV/c*sqrt(m)
cov_p__px_bar \(\langle p \cdot \overline{p_x} \rangle - \langle p \rangle \langle \overline{p_x} \rangle\) eV/c*sqrt(m)
cov_p__Jx \(\langle p \cdot J_x \rangle - \langle p \rangle \langle J_x \rangle\) eV/c*m
cov_p__Jy \(\langle p \cdot J_y \rangle - \langle p \rangle \langle J_y \rangle\) eV/c*m
cov_energy__x \(\langle E \cdot x \rangle - \langle E \rangle \langle x \rangle\) eV*m
cov_energy__y \(\langle E \cdot y \rangle - \langle E \rangle \langle y \rangle\) eV*m
cov_energy__z \(\langle E \cdot z \rangle - \langle E \rangle \langle z \rangle\) eV*m
cov_energy__px \(\langle E \cdot p_x \rangle - \langle E \rangle \langle p_x \rangle\) eV*eV/c
cov_energy__py \(\langle E \cdot p_y \rangle - \langle E \rangle \langle p_y \rangle\) eV*eV/c
cov_energy__pz \(\langle E \cdot p_z \rangle - \langle E \rangle \langle p_z \rangle\) eV*eV/c
cov_energy__t \(\langle E \cdot t \rangle - \langle E \rangle \langle t \rangle\) eV*s
cov_energy__status \(\langle E \cdot \text{status} \rangle - \langle E \rangle \langle \text{status} \rangle\) eV
cov_energy__weight \(\langle E \cdot w \rangle - \langle E \rangle \langle w \rangle\) eV*C
cov_energy__id \(\langle E \cdot \text{id} \rangle - \langle E \rangle \langle \text{id} \rangle\) eV
cov_energy__z/c \(\langle E \cdot z/c \rangle - \langle E \rangle \langle z/c \rangle\) eV*s
cov_energy__p \(\langle E \cdot p \rangle - \langle E \rangle \langle p \rangle\) eV*eV/c
cov_energy__energy \(\langle E \cdot E \rangle - \langle E \rangle \langle E \rangle\) eV^2
cov_energy__kinetic_energy \(\langle E \cdot E_\text{kinetic} \rangle - \langle E \rangle \langle E_\text{kinetic} \rangle\) eV^2
cov_energy__xp \(\langle E \cdot x' \rangle - \langle E \rangle \langle x' \rangle\) eV*rad
cov_energy__yp \(\langle E \cdot y' \rangle - \langle E \rangle \langle y' \rangle\) eV*rad
cov_energy__higher_order_energy \(\langle E \cdot E_{(2)} \rangle - \langle E \rangle \langle E_{(2)} \rangle\) eV^2
cov_energy__r \(\langle E \cdot r \rangle - \langle E \rangle \langle r \rangle\) eV*m
cov_energy__theta \(\langle E \cdot \theta \rangle - \langle E \rangle \langle \theta \rangle\) eV*rad
cov_energy__pr \(\langle E \cdot p_r \rangle - \langle E \rangle \langle p_r \rangle\) eV*eV/c
cov_energy__ptheta \(\langle E \cdot p_{\theta} \rangle - \langle E \rangle \langle p_{\theta} \rangle\) eV*eV/c
cov_energy__Lz \(\langle E \cdot L_z \rangle - \langle E \rangle \langle L_z \rangle\) eV*m*eV/c
cov_energy__gamma \(\langle E \cdot \gamma \rangle - \langle E \rangle \langle \gamma \rangle\) eV
cov_energy__beta \(\langle E \cdot \beta \rangle - \langle E \rangle \langle \beta \rangle\) eV
cov_energy__beta_x \(\langle E \cdot \beta_x \rangle - \langle E \rangle \langle \beta_x \rangle\) eV
cov_energy__beta_y \(\langle E \cdot \beta_y \rangle - \langle E \rangle \langle \beta_y \rangle\) eV
cov_energy__beta_z \(\langle E \cdot \beta_z \rangle - \langle E \rangle \langle \beta_z \rangle\) eV
cov_energy__x_bar \(\langle E \cdot \overline{x} \rangle - \langle E \rangle \langle \overline{x} \rangle\) eV*sqrt(m)
cov_energy__px_bar \(\langle E \cdot \overline{p_x} \rangle - \langle E \rangle \langle \overline{p_x} \rangle\) eV*sqrt(m)
cov_energy__Jx \(\langle E \cdot J_x \rangle - \langle E \rangle \langle J_x \rangle\) eV*m
cov_energy__Jy \(\langle E \cdot J_y \rangle - \langle E \rangle \langle J_y \rangle\) eV*m
cov_kinetic_energy__x \(\langle E_\text{kinetic} \cdot x \rangle - \langle E_\text{kinetic} \rangle \langle x \rangle\) eV*m
cov_kinetic_energy__y \(\langle E_\text{kinetic} \cdot y \rangle - \langle E_\text{kinetic} \rangle \langle y \rangle\) eV*m
cov_kinetic_energy__z \(\langle E_\text{kinetic} \cdot z \rangle - \langle E_\text{kinetic} \rangle \langle z \rangle\) eV*m
cov_kinetic_energy__px \(\langle E_\text{kinetic} \cdot p_x \rangle - \langle E_\text{kinetic} \rangle \langle p_x \rangle\) eV*eV/c
cov_kinetic_energy__py \(\langle E_\text{kinetic} \cdot p_y \rangle - \langle E_\text{kinetic} \rangle \langle p_y \rangle\) eV*eV/c
cov_kinetic_energy__pz \(\langle E_\text{kinetic} \cdot p_z \rangle - \langle E_\text{kinetic} \rangle \langle p_z \rangle\) eV*eV/c
cov_kinetic_energy__t \(\langle E_\text{kinetic} \cdot t \rangle - \langle E_\text{kinetic} \rangle \langle t \rangle\) eV*s
cov_kinetic_energy__status \(\langle E_\text{kinetic} \cdot \text{status} \rangle - \langle E_\text{kinetic} \rangle \langle \text{status} \rangle\) eV
cov_kinetic_energy__weight \(\langle E_\text{kinetic} \cdot w \rangle - \langle E_\text{kinetic} \rangle \langle w \rangle\) eV*C
cov_kinetic_energy__id \(\langle E_\text{kinetic} \cdot \text{id} \rangle - \langle E_\text{kinetic} \rangle \langle \text{id} \rangle\) eV
cov_kinetic_energy__z/c \(\langle E_\text{kinetic} \cdot z/c \rangle - \langle E_\text{kinetic} \rangle \langle z/c \rangle\) eV*s
cov_kinetic_energy__p \(\langle E_\text{kinetic} \cdot p \rangle - \langle E_\text{kinetic} \rangle \langle p \rangle\) eV*eV/c
cov_kinetic_energy__energy \(\langle E_\text{kinetic} \cdot E \rangle - \langle E_\text{kinetic} \rangle \langle E \rangle\) eV^2
cov_kinetic_energy__kinetic_energy \(\langle E_\text{kinetic} \cdot E_\text{kinetic} \rangle - \langle E_\text{kinetic} \rangle \langle E_\text{kinetic} \rangle\) eV^2
cov_kinetic_energy__xp \(\langle E_\text{kinetic} \cdot x' \rangle - \langle E_\text{kinetic} \rangle \langle x' \rangle\) eV*rad
cov_kinetic_energy__yp \(\langle E_\text{kinetic} \cdot y' \rangle - \langle E_\text{kinetic} \rangle \langle y' \rangle\) eV*rad
cov_kinetic_energy__higher_order_energy \(\langle E_\text{kinetic} \cdot E_{(2)} \rangle - \langle E_\text{kinetic} \rangle \langle E_{(2)} \rangle\) eV^2
cov_kinetic_energy__r \(\langle E_\text{kinetic} \cdot r \rangle - \langle E_\text{kinetic} \rangle \langle r \rangle\) eV*m
cov_kinetic_energy__theta \(\langle E_\text{kinetic} \cdot \theta \rangle - \langle E_\text{kinetic} \rangle \langle \theta \rangle\) eV*rad
cov_kinetic_energy__pr \(\langle E_\text{kinetic} \cdot p_r \rangle - \langle E_\text{kinetic} \rangle \langle p_r \rangle\) eV*eV/c
cov_kinetic_energy__ptheta \(\langle E_\text{kinetic} \cdot p_{\theta} \rangle - \langle E_\text{kinetic} \rangle \langle p_{\theta} \rangle\) eV*eV/c
cov_kinetic_energy__Lz \(\langle E_\text{kinetic} \cdot L_z \rangle - \langle E_\text{kinetic} \rangle \langle L_z \rangle\) eV*m*eV/c
cov_kinetic_energy__gamma \(\langle E_\text{kinetic} \cdot \gamma \rangle - \langle E_\text{kinetic} \rangle \langle \gamma \rangle\) eV
cov_kinetic_energy__beta \(\langle E_\text{kinetic} \cdot \beta \rangle - \langle E_\text{kinetic} \rangle \langle \beta \rangle\) eV
cov_kinetic_energy__beta_x \(\langle E_\text{kinetic} \cdot \beta_x \rangle - \langle E_\text{kinetic} \rangle \langle \beta_x \rangle\) eV
cov_kinetic_energy__beta_y \(\langle E_\text{kinetic} \cdot \beta_y \rangle - \langle E_\text{kinetic} \rangle \langle \beta_y \rangle\) eV
cov_kinetic_energy__beta_z \(\langle E_\text{kinetic} \cdot \beta_z \rangle - \langle E_\text{kinetic} \rangle \langle \beta_z \rangle\) eV
cov_kinetic_energy__x_bar \(\langle E_\text{kinetic} \cdot \overline{x} \rangle - \langle E_\text{kinetic} \rangle \langle \overline{x} \rangle\) eV*sqrt(m)
cov_kinetic_energy__px_bar \(\langle E_\text{kinetic} \cdot \overline{p_x} \rangle - \langle E_\text{kinetic} \rangle \langle \overline{p_x} \rangle\) eV*sqrt(m)
cov_kinetic_energy__Jx \(\langle E_\text{kinetic} \cdot J_x \rangle - \langle E_\text{kinetic} \rangle \langle J_x \rangle\) eV*m
cov_kinetic_energy__Jy \(\langle E_\text{kinetic} \cdot J_y \rangle - \langle E_\text{kinetic} \rangle \langle J_y \rangle\) eV*m
cov_xp__x \(\langle x' \cdot x \rangle - \langle x' \rangle \langle x \rangle\) rad*m
cov_xp__y \(\langle x' \cdot y \rangle - \langle x' \rangle \langle y \rangle\) rad*m
cov_xp__z \(\langle x' \cdot z \rangle - \langle x' \rangle \langle z \rangle\) rad*m
cov_xp__px \(\langle x' \cdot p_x \rangle - \langle x' \rangle \langle p_x \rangle\) rad*eV/c
cov_xp__py \(\langle x' \cdot p_y \rangle - \langle x' \rangle \langle p_y \rangle\) rad*eV/c
cov_xp__pz \(\langle x' \cdot p_z \rangle - \langle x' \rangle \langle p_z \rangle\) rad*eV/c
cov_xp__t \(\langle x' \cdot t \rangle - \langle x' \rangle \langle t \rangle\) rad*s
cov_xp__status \(\langle x' \cdot \text{status} \rangle - \langle x' \rangle \langle \text{status} \rangle\) rad
cov_xp__weight \(\langle x' \cdot w \rangle - \langle x' \rangle \langle w \rangle\) rad*C
cov_xp__id \(\langle x' \cdot \text{id} \rangle - \langle x' \rangle \langle \text{id} \rangle\) rad
cov_xp__z/c \(\langle x' \cdot z/c \rangle - \langle x' \rangle \langle z/c \rangle\) rad*s
cov_xp__p \(\langle x' \cdot p \rangle - \langle x' \rangle \langle p \rangle\) rad*eV/c
cov_xp__energy \(\langle x' \cdot E \rangle - \langle x' \rangle \langle E \rangle\) rad*eV
cov_xp__kinetic_energy \(\langle x' \cdot E_\text{kinetic} \rangle - \langle x' \rangle \langle E_\text{kinetic} \rangle\) rad*eV
cov_xp__xp \(\langle x' \cdot x' \rangle - \langle x' \rangle \langle x' \rangle\) rad^2
cov_xp__yp \(\langle x' \cdot y' \rangle - \langle x' \rangle \langle y' \rangle\) rad^2
cov_xp__higher_order_energy \(\langle x' \cdot E_{(2)} \rangle - \langle x' \rangle \langle E_{(2)} \rangle\) rad*eV
cov_xp__r \(\langle x' \cdot r \rangle - \langle x' \rangle \langle r \rangle\) rad*m
cov_xp__theta \(\langle x' \cdot \theta \rangle - \langle x' \rangle \langle \theta \rangle\) rad^2
cov_xp__pr \(\langle x' \cdot p_r \rangle - \langle x' \rangle \langle p_r \rangle\) rad*eV/c
cov_xp__ptheta \(\langle x' \cdot p_{\theta} \rangle - \langle x' \rangle \langle p_{\theta} \rangle\) rad*eV/c
cov_xp__Lz \(\langle x' \cdot L_z \rangle - \langle x' \rangle \langle L_z \rangle\) rad*m*eV/c
cov_xp__gamma \(\langle x' \cdot \gamma \rangle - \langle x' \rangle \langle \gamma \rangle\) rad
cov_xp__beta \(\langle x' \cdot \beta \rangle - \langle x' \rangle \langle \beta \rangle\) rad
cov_xp__beta_x \(\langle x' \cdot \beta_x \rangle - \langle x' \rangle \langle \beta_x \rangle\) rad
cov_xp__beta_y \(\langle x' \cdot \beta_y \rangle - \langle x' \rangle \langle \beta_y \rangle\) rad
cov_xp__beta_z \(\langle x' \cdot \beta_z \rangle - \langle x' \rangle \langle \beta_z \rangle\) rad
cov_xp__x_bar \(\langle x' \cdot \overline{x} \rangle - \langle x' \rangle \langle \overline{x} \rangle\) rad*sqrt(m)
cov_xp__px_bar \(\langle x' \cdot \overline{p_x} \rangle - \langle x' \rangle \langle \overline{p_x} \rangle\) rad*sqrt(m)
cov_xp__Jx \(\langle x' \cdot J_x \rangle - \langle x' \rangle \langle J_x \rangle\) rad*m
cov_xp__Jy \(\langle x' \cdot J_y \rangle - \langle x' \rangle \langle J_y \rangle\) rad*m
cov_yp__x \(\langle y' \cdot x \rangle - \langle y' \rangle \langle x \rangle\) rad*m
cov_yp__y \(\langle y' \cdot y \rangle - \langle y' \rangle \langle y \rangle\) rad*m
cov_yp__z \(\langle y' \cdot z \rangle - \langle y' \rangle \langle z \rangle\) rad*m
cov_yp__px \(\langle y' \cdot p_x \rangle - \langle y' \rangle \langle p_x \rangle\) rad*eV/c
cov_yp__py \(\langle y' \cdot p_y \rangle - \langle y' \rangle \langle p_y \rangle\) rad*eV/c
cov_yp__pz \(\langle y' \cdot p_z \rangle - \langle y' \rangle \langle p_z \rangle\) rad*eV/c
cov_yp__t \(\langle y' \cdot t \rangle - \langle y' \rangle \langle t \rangle\) rad*s
cov_yp__status \(\langle y' \cdot \text{status} \rangle - \langle y' \rangle \langle \text{status} \rangle\) rad
cov_yp__weight \(\langle y' \cdot w \rangle - \langle y' \rangle \langle w \rangle\) rad*C
cov_yp__id \(\langle y' \cdot \text{id} \rangle - \langle y' \rangle \langle \text{id} \rangle\) rad
cov_yp__z/c \(\langle y' \cdot z/c \rangle - \langle y' \rangle \langle z/c \rangle\) rad*s
cov_yp__p \(\langle y' \cdot p \rangle - \langle y' \rangle \langle p \rangle\) rad*eV/c
cov_yp__energy \(\langle y' \cdot E \rangle - \langle y' \rangle \langle E \rangle\) rad*eV
cov_yp__kinetic_energy \(\langle y' \cdot E_\text{kinetic} \rangle - \langle y' \rangle \langle E_\text{kinetic} \rangle\) rad*eV
cov_yp__xp \(\langle y' \cdot x' \rangle - \langle y' \rangle \langle x' \rangle\) rad^2
cov_yp__yp \(\langle y' \cdot y' \rangle - \langle y' \rangle \langle y' \rangle\) rad^2
cov_yp__higher_order_energy \(\langle y' \cdot E_{(2)} \rangle - \langle y' \rangle \langle E_{(2)} \rangle\) rad*eV
cov_yp__r \(\langle y' \cdot r \rangle - \langle y' \rangle \langle r \rangle\) rad*m
cov_yp__theta \(\langle y' \cdot \theta \rangle - \langle y' \rangle \langle \theta \rangle\) rad^2
cov_yp__pr \(\langle y' \cdot p_r \rangle - \langle y' \rangle \langle p_r \rangle\) rad*eV/c
cov_yp__ptheta \(\langle y' \cdot p_{\theta} \rangle - \langle y' \rangle \langle p_{\theta} \rangle\) rad*eV/c
cov_yp__Lz \(\langle y' \cdot L_z \rangle - \langle y' \rangle \langle L_z \rangle\) rad*m*eV/c
cov_yp__gamma \(\langle y' \cdot \gamma \rangle - \langle y' \rangle \langle \gamma \rangle\) rad
cov_yp__beta \(\langle y' \cdot \beta \rangle - \langle y' \rangle \langle \beta \rangle\) rad
cov_yp__beta_x \(\langle y' \cdot \beta_x \rangle - \langle y' \rangle \langle \beta_x \rangle\) rad
cov_yp__beta_y \(\langle y' \cdot \beta_y \rangle - \langle y' \rangle \langle \beta_y \rangle\) rad
cov_yp__beta_z \(\langle y' \cdot \beta_z \rangle - \langle y' \rangle \langle \beta_z \rangle\) rad
cov_yp__x_bar \(\langle y' \cdot \overline{x} \rangle - \langle y' \rangle \langle \overline{x} \rangle\) rad*sqrt(m)
cov_yp__px_bar \(\langle y' \cdot \overline{p_x} \rangle - \langle y' \rangle \langle \overline{p_x} \rangle\) rad*sqrt(m)
cov_yp__Jx \(\langle y' \cdot J_x \rangle - \langle y' \rangle \langle J_x \rangle\) rad*m
cov_yp__Jy \(\langle y' \cdot J_y \rangle - \langle y' \rangle \langle J_y \rangle\) rad*m
cov_higher_order_energy__x \(\langle E_{(2)} \cdot x \rangle - \langle E_{(2)} \rangle \langle x \rangle\) eV*m
cov_higher_order_energy__y \(\langle E_{(2)} \cdot y \rangle - \langle E_{(2)} \rangle \langle y \rangle\) eV*m
cov_higher_order_energy__z \(\langle E_{(2)} \cdot z \rangle - \langle E_{(2)} \rangle \langle z \rangle\) eV*m
cov_higher_order_energy__px \(\langle E_{(2)} \cdot p_x \rangle - \langle E_{(2)} \rangle \langle p_x \rangle\) eV*eV/c
cov_higher_order_energy__py \(\langle E_{(2)} \cdot p_y \rangle - \langle E_{(2)} \rangle \langle p_y \rangle\) eV*eV/c
cov_higher_order_energy__pz \(\langle E_{(2)} \cdot p_z \rangle - \langle E_{(2)} \rangle \langle p_z \rangle\) eV*eV/c
cov_higher_order_energy__t \(\langle E_{(2)} \cdot t \rangle - \langle E_{(2)} \rangle \langle t \rangle\) eV*s
cov_higher_order_energy__status \(\langle E_{(2)} \cdot \text{status} \rangle - \langle E_{(2)} \rangle \langle \text{status} \rangle\) eV
cov_higher_order_energy__weight \(\langle E_{(2)} \cdot w \rangle - \langle E_{(2)} \rangle \langle w \rangle\) eV*C
cov_higher_order_energy__id \(\langle E_{(2)} \cdot \text{id} \rangle - \langle E_{(2)} \rangle \langle \text{id} \rangle\) eV
cov_higher_order_energy__z/c \(\langle E_{(2)} \cdot z/c \rangle - \langle E_{(2)} \rangle \langle z/c \rangle\) eV*s
cov_higher_order_energy__p \(\langle E_{(2)} \cdot p \rangle - \langle E_{(2)} \rangle \langle p \rangle\) eV*eV/c
cov_higher_order_energy__energy \(\langle E_{(2)} \cdot E \rangle - \langle E_{(2)} \rangle \langle E \rangle\) eV^2
cov_higher_order_energy__kinetic_energy \(\langle E_{(2)} \cdot E_\text{kinetic} \rangle - \langle E_{(2)} \rangle \langle E_\text{kinetic} \rangle\) eV^2
cov_higher_order_energy__xp \(\langle E_{(2)} \cdot x' \rangle - \langle E_{(2)} \rangle \langle x' \rangle\) eV*rad
cov_higher_order_energy__yp \(\langle E_{(2)} \cdot y' \rangle - \langle E_{(2)} \rangle \langle y' \rangle\) eV*rad
cov_higher_order_energy__higher_order_energy \(\langle E_{(2)} \cdot E_{(2)} \rangle - \langle E_{(2)} \rangle \langle E_{(2)} \rangle\) eV^2
cov_higher_order_energy__r \(\langle E_{(2)} \cdot r \rangle - \langle E_{(2)} \rangle \langle r \rangle\) eV*m
cov_higher_order_energy__theta \(\langle E_{(2)} \cdot \theta \rangle - \langle E_{(2)} \rangle \langle \theta \rangle\) eV*rad
cov_higher_order_energy__pr \(\langle E_{(2)} \cdot p_r \rangle - \langle E_{(2)} \rangle \langle p_r \rangle\) eV*eV/c
cov_higher_order_energy__ptheta \(\langle E_{(2)} \cdot p_{\theta} \rangle - \langle E_{(2)} \rangle \langle p_{\theta} \rangle\) eV*eV/c
cov_higher_order_energy__Lz \(\langle E_{(2)} \cdot L_z \rangle - \langle E_{(2)} \rangle \langle L_z \rangle\) eV*m*eV/c
cov_higher_order_energy__gamma \(\langle E_{(2)} \cdot \gamma \rangle - \langle E_{(2)} \rangle \langle \gamma \rangle\) eV
cov_higher_order_energy__beta \(\langle E_{(2)} \cdot \beta \rangle - \langle E_{(2)} \rangle \langle \beta \rangle\) eV
cov_higher_order_energy__beta_x \(\langle E_{(2)} \cdot \beta_x \rangle - \langle E_{(2)} \rangle \langle \beta_x \rangle\) eV
cov_higher_order_energy__beta_y \(\langle E_{(2)} \cdot \beta_y \rangle - \langle E_{(2)} \rangle \langle \beta_y \rangle\) eV
cov_higher_order_energy__beta_z \(\langle E_{(2)} \cdot \beta_z \rangle - \langle E_{(2)} \rangle \langle \beta_z \rangle\) eV
cov_higher_order_energy__x_bar \(\langle E_{(2)} \cdot \overline{x} \rangle - \langle E_{(2)} \rangle \langle \overline{x} \rangle\) eV*sqrt(m)
cov_higher_order_energy__px_bar \(\langle E_{(2)} \cdot \overline{p_x} \rangle - \langle E_{(2)} \rangle \langle \overline{p_x} \rangle\) eV*sqrt(m)
cov_higher_order_energy__Jx \(\langle E_{(2)} \cdot J_x \rangle - \langle E_{(2)} \rangle \langle J_x \rangle\) eV*m
cov_higher_order_energy__Jy \(\langle E_{(2)} \cdot J_y \rangle - \langle E_{(2)} \rangle \langle J_y \rangle\) eV*m
cov_r__x \(\langle r \cdot x \rangle - \langle r \rangle \langle x \rangle\) m^2
cov_r__y \(\langle r \cdot y \rangle - \langle r \rangle \langle y \rangle\) m^2
cov_r__z \(\langle r \cdot z \rangle - \langle r \rangle \langle z \rangle\) m^2
cov_r__px \(\langle r \cdot p_x \rangle - \langle r \rangle \langle p_x \rangle\) m*eV/c
cov_r__py \(\langle r \cdot p_y \rangle - \langle r \rangle \langle p_y \rangle\) m*eV/c
cov_r__pz \(\langle r \cdot p_z \rangle - \langle r \rangle \langle p_z \rangle\) m*eV/c
cov_r__t \(\langle r \cdot t \rangle - \langle r \rangle \langle t \rangle\) m*s
cov_r__status \(\langle r \cdot \text{status} \rangle - \langle r \rangle \langle \text{status} \rangle\) m
cov_r__weight \(\langle r \cdot w \rangle - \langle r \rangle \langle w \rangle\) m*C
cov_r__id \(\langle r \cdot \text{id} \rangle - \langle r \rangle \langle \text{id} \rangle\) m
cov_r__z/c \(\langle r \cdot z/c \rangle - \langle r \rangle \langle z/c \rangle\) m*s
cov_r__p \(\langle r \cdot p \rangle - \langle r \rangle \langle p \rangle\) m*eV/c
cov_r__energy \(\langle r \cdot E \rangle - \langle r \rangle \langle E \rangle\) m*eV
cov_r__kinetic_energy \(\langle r \cdot E_\text{kinetic} \rangle - \langle r \rangle \langle E_\text{kinetic} \rangle\) m*eV
cov_r__xp \(\langle r \cdot x' \rangle - \langle r \rangle \langle x' \rangle\) m*rad
cov_r__yp \(\langle r \cdot y' \rangle - \langle r \rangle \langle y' \rangle\) m*rad
cov_r__higher_order_energy \(\langle r \cdot E_{(2)} \rangle - \langle r \rangle \langle E_{(2)} \rangle\) m*eV
cov_r__r \(\langle r \cdot r \rangle - \langle r \rangle \langle r \rangle\) m^2
cov_r__theta \(\langle r \cdot \theta \rangle - \langle r \rangle \langle \theta \rangle\) m*rad
cov_r__pr \(\langle r \cdot p_r \rangle - \langle r \rangle \langle p_r \rangle\) m*eV/c
cov_r__ptheta \(\langle r \cdot p_{\theta} \rangle - \langle r \rangle \langle p_{\theta} \rangle\) m*eV/c
cov_r__Lz \(\langle r \cdot L_z \rangle - \langle r \rangle \langle L_z \rangle\) m*m*eV/c
cov_r__gamma \(\langle r \cdot \gamma \rangle - \langle r \rangle \langle \gamma \rangle\) m
cov_r__beta \(\langle r \cdot \beta \rangle - \langle r \rangle \langle \beta \rangle\) m
cov_r__beta_x \(\langle r \cdot \beta_x \rangle - \langle r \rangle \langle \beta_x \rangle\) m
cov_r__beta_y \(\langle r \cdot \beta_y \rangle - \langle r \rangle \langle \beta_y \rangle\) m
cov_r__beta_z \(\langle r \cdot \beta_z \rangle - \langle r \rangle \langle \beta_z \rangle\) m
cov_r__x_bar \(\langle r \cdot \overline{x} \rangle - \langle r \rangle \langle \overline{x} \rangle\) m*sqrt(m)
cov_r__px_bar \(\langle r \cdot \overline{p_x} \rangle - \langle r \rangle \langle \overline{p_x} \rangle\) m*sqrt(m)
cov_r__Jx \(\langle r \cdot J_x \rangle - \langle r \rangle \langle J_x \rangle\) m^2
cov_r__Jy \(\langle r \cdot J_y \rangle - \langle r \rangle \langle J_y \rangle\) m^2
cov_theta__x \(\langle \theta \cdot x \rangle - \langle \theta \rangle \langle x \rangle\) rad*m
cov_theta__y \(\langle \theta \cdot y \rangle - \langle \theta \rangle \langle y \rangle\) rad*m
cov_theta__z \(\langle \theta \cdot z \rangle - \langle \theta \rangle \langle z \rangle\) rad*m
cov_theta__px \(\langle \theta \cdot p_x \rangle - \langle \theta \rangle \langle p_x \rangle\) rad*eV/c
cov_theta__py \(\langle \theta \cdot p_y \rangle - \langle \theta \rangle \langle p_y \rangle\) rad*eV/c
cov_theta__pz \(\langle \theta \cdot p_z \rangle - \langle \theta \rangle \langle p_z \rangle\) rad*eV/c
cov_theta__t \(\langle \theta \cdot t \rangle - \langle \theta \rangle \langle t \rangle\) rad*s
cov_theta__status \(\langle \theta \cdot \text{status} \rangle - \langle \theta \rangle \langle \text{status} \rangle\) rad
cov_theta__weight \(\langle \theta \cdot w \rangle - \langle \theta \rangle \langle w \rangle\) rad*C
cov_theta__id \(\langle \theta \cdot \text{id} \rangle - \langle \theta \rangle \langle \text{id} \rangle\) rad
cov_theta__z/c \(\langle \theta \cdot z/c \rangle - \langle \theta \rangle \langle z/c \rangle\) rad*s
cov_theta__p \(\langle \theta \cdot p \rangle - \langle \theta \rangle \langle p \rangle\) rad*eV/c
cov_theta__energy \(\langle \theta \cdot E \rangle - \langle \theta \rangle \langle E \rangle\) rad*eV
cov_theta__kinetic_energy \(\langle \theta \cdot E_\text{kinetic} \rangle - \langle \theta \rangle \langle E_\text{kinetic} \rangle\) rad*eV
cov_theta__xp \(\langle \theta \cdot x' \rangle - \langle \theta \rangle \langle x' \rangle\) rad^2
cov_theta__yp \(\langle \theta \cdot y' \rangle - \langle \theta \rangle \langle y' \rangle\) rad^2
cov_theta__higher_order_energy \(\langle \theta \cdot E_{(2)} \rangle - \langle \theta \rangle \langle E_{(2)} \rangle\) rad*eV
cov_theta__r \(\langle \theta \cdot r \rangle - \langle \theta \rangle \langle r \rangle\) rad*m
cov_theta__theta \(\langle \theta \cdot \theta \rangle - \langle \theta \rangle \langle \theta \rangle\) rad^2
cov_theta__pr \(\langle \theta \cdot p_r \rangle - \langle \theta \rangle \langle p_r \rangle\) rad*eV/c
cov_theta__ptheta \(\langle \theta \cdot p_{\theta} \rangle - \langle \theta \rangle \langle p_{\theta} \rangle\) rad*eV/c
cov_theta__Lz \(\langle \theta \cdot L_z \rangle - \langle \theta \rangle \langle L_z \rangle\) rad*m*eV/c
cov_theta__gamma \(\langle \theta \cdot \gamma \rangle - \langle \theta \rangle \langle \gamma \rangle\) rad
cov_theta__beta \(\langle \theta \cdot \beta \rangle - \langle \theta \rangle \langle \beta \rangle\) rad
cov_theta__beta_x \(\langle \theta \cdot \beta_x \rangle - \langle \theta \rangle \langle \beta_x \rangle\) rad
cov_theta__beta_y \(\langle \theta \cdot \beta_y \rangle - \langle \theta \rangle \langle \beta_y \rangle\) rad
cov_theta__beta_z \(\langle \theta \cdot \beta_z \rangle - \langle \theta \rangle \langle \beta_z \rangle\) rad
cov_theta__x_bar \(\langle \theta \cdot \overline{x} \rangle - \langle \theta \rangle \langle \overline{x} \rangle\) rad*sqrt(m)
cov_theta__px_bar \(\langle \theta \cdot \overline{p_x} \rangle - \langle \theta \rangle \langle \overline{p_x} \rangle\) rad*sqrt(m)
cov_theta__Jx \(\langle \theta \cdot J_x \rangle - \langle \theta \rangle \langle J_x \rangle\) rad*m
cov_theta__Jy \(\langle \theta \cdot J_y \rangle - \langle \theta \rangle \langle J_y \rangle\) rad*m
cov_pr__x \(\langle p_r \cdot x \rangle - \langle p_r \rangle \langle x \rangle\) eV/c*m
cov_pr__y \(\langle p_r \cdot y \rangle - \langle p_r \rangle \langle y \rangle\) eV/c*m
cov_pr__z \(\langle p_r \cdot z \rangle - \langle p_r \rangle \langle z \rangle\) eV/c*m
cov_pr__px \(\langle p_r \cdot p_x \rangle - \langle p_r \rangle \langle p_x \rangle\) eV/c^2
cov_pr__py \(\langle p_r \cdot p_y \rangle - \langle p_r \rangle \langle p_y \rangle\) eV/c^2
cov_pr__pz \(\langle p_r \cdot p_z \rangle - \langle p_r \rangle \langle p_z \rangle\) eV/c^2
cov_pr__t \(\langle p_r \cdot t \rangle - \langle p_r \rangle \langle t \rangle\) eV/c*s
cov_pr__status \(\langle p_r \cdot \text{status} \rangle - \langle p_r \rangle \langle \text{status} \rangle\) eV/c
cov_pr__weight \(\langle p_r \cdot w \rangle - \langle p_r \rangle \langle w \rangle\) eV/c*C
cov_pr__id \(\langle p_r \cdot \text{id} \rangle - \langle p_r \rangle \langle \text{id} \rangle\) eV/c
cov_pr__z/c \(\langle p_r \cdot z/c \rangle - \langle p_r \rangle \langle z/c \rangle\) eV/c*s
cov_pr__p \(\langle p_r \cdot p \rangle - \langle p_r \rangle \langle p \rangle\) eV/c^2
cov_pr__energy \(\langle p_r \cdot E \rangle - \langle p_r \rangle \langle E \rangle\) eV/c*eV
cov_pr__kinetic_energy \(\langle p_r \cdot E_\text{kinetic} \rangle - \langle p_r \rangle \langle E_\text{kinetic} \rangle\) eV/c*eV
cov_pr__xp \(\langle p_r \cdot x' \rangle - \langle p_r \rangle \langle x' \rangle\) eV/c*rad
cov_pr__yp \(\langle p_r \cdot y' \rangle - \langle p_r \rangle \langle y' \rangle\) eV/c*rad
cov_pr__higher_order_energy \(\langle p_r \cdot E_{(2)} \rangle - \langle p_r \rangle \langle E_{(2)} \rangle\) eV/c*eV
cov_pr__r \(\langle p_r \cdot r \rangle - \langle p_r \rangle \langle r \rangle\) eV/c*m
cov_pr__theta \(\langle p_r \cdot \theta \rangle - \langle p_r \rangle \langle \theta \rangle\) eV/c*rad
cov_pr__pr \(\langle p_r \cdot p_r \rangle - \langle p_r \rangle \langle p_r \rangle\) eV/c^2
cov_pr__ptheta \(\langle p_r \cdot p_{\theta} \rangle - \langle p_r \rangle \langle p_{\theta} \rangle\) eV/c^2
cov_pr__Lz \(\langle p_r \cdot L_z \rangle - \langle p_r \rangle \langle L_z \rangle\) eV/c*m*eV/c
cov_pr__gamma \(\langle p_r \cdot \gamma \rangle - \langle p_r \rangle \langle \gamma \rangle\) eV/c
cov_pr__beta \(\langle p_r \cdot \beta \rangle - \langle p_r \rangle \langle \beta \rangle\) eV/c
cov_pr__beta_x \(\langle p_r \cdot \beta_x \rangle - \langle p_r \rangle \langle \beta_x \rangle\) eV/c
cov_pr__beta_y \(\langle p_r \cdot \beta_y \rangle - \langle p_r \rangle \langle \beta_y \rangle\) eV/c
cov_pr__beta_z \(\langle p_r \cdot \beta_z \rangle - \langle p_r \rangle \langle \beta_z \rangle\) eV/c
cov_pr__x_bar \(\langle p_r \cdot \overline{x} \rangle - \langle p_r \rangle \langle \overline{x} \rangle\) eV/c*sqrt(m)
cov_pr__px_bar \(\langle p_r \cdot \overline{p_x} \rangle - \langle p_r \rangle \langle \overline{p_x} \rangle\) eV/c*sqrt(m)
cov_pr__Jx \(\langle p_r \cdot J_x \rangle - \langle p_r \rangle \langle J_x \rangle\) eV/c*m
cov_pr__Jy \(\langle p_r \cdot J_y \rangle - \langle p_r \rangle \langle J_y \rangle\) eV/c*m
cov_ptheta__x \(\langle p_{\theta} \cdot x \rangle - \langle p_{\theta} \rangle \langle x \rangle\) eV/c*m
cov_ptheta__y \(\langle p_{\theta} \cdot y \rangle - \langle p_{\theta} \rangle \langle y \rangle\) eV/c*m
cov_ptheta__z \(\langle p_{\theta} \cdot z \rangle - \langle p_{\theta} \rangle \langle z \rangle\) eV/c*m
cov_ptheta__px \(\langle p_{\theta} \cdot p_x \rangle - \langle p_{\theta} \rangle \langle p_x \rangle\) eV/c^2
cov_ptheta__py \(\langle p_{\theta} \cdot p_y \rangle - \langle p_{\theta} \rangle \langle p_y \rangle\) eV/c^2
cov_ptheta__pz \(\langle p_{\theta} \cdot p_z \rangle - \langle p_{\theta} \rangle \langle p_z \rangle\) eV/c^2
cov_ptheta__t \(\langle p_{\theta} \cdot t \rangle - \langle p_{\theta} \rangle \langle t \rangle\) eV/c*s
cov_ptheta__status \(\langle p_{\theta} \cdot \text{status} \rangle - \langle p_{\theta} \rangle \langle \text{status} \rangle\) eV/c
cov_ptheta__weight \(\langle p_{\theta} \cdot w \rangle - \langle p_{\theta} \rangle \langle w \rangle\) eV/c*C
cov_ptheta__id \(\langle p_{\theta} \cdot \text{id} \rangle - \langle p_{\theta} \rangle \langle \text{id} \rangle\) eV/c
cov_ptheta__z/c \(\langle p_{\theta} \cdot z/c \rangle - \langle p_{\theta} \rangle \langle z/c \rangle\) eV/c*s
cov_ptheta__p \(\langle p_{\theta} \cdot p \rangle - \langle p_{\theta} \rangle \langle p \rangle\) eV/c^2
cov_ptheta__energy \(\langle p_{\theta} \cdot E \rangle - \langle p_{\theta} \rangle \langle E \rangle\) eV/c*eV
cov_ptheta__kinetic_energy \(\langle p_{\theta} \cdot E_\text{kinetic} \rangle - \langle p_{\theta} \rangle \langle E_\text{kinetic} \rangle\) eV/c*eV
cov_ptheta__xp \(\langle p_{\theta} \cdot x' \rangle - \langle p_{\theta} \rangle \langle x' \rangle\) eV/c*rad
cov_ptheta__yp \(\langle p_{\theta} \cdot y' \rangle - \langle p_{\theta} \rangle \langle y' \rangle\) eV/c*rad
cov_ptheta__higher_order_energy \(\langle p_{\theta} \cdot E_{(2)} \rangle - \langle p_{\theta} \rangle \langle E_{(2)} \rangle\) eV/c*eV
cov_ptheta__r \(\langle p_{\theta} \cdot r \rangle - \langle p_{\theta} \rangle \langle r \rangle\) eV/c*m
cov_ptheta__theta \(\langle p_{\theta} \cdot \theta \rangle - \langle p_{\theta} \rangle \langle \theta \rangle\) eV/c*rad
cov_ptheta__pr \(\langle p_{\theta} \cdot p_r \rangle - \langle p_{\theta} \rangle \langle p_r \rangle\) eV/c^2
cov_ptheta__ptheta \(\langle p_{\theta} \cdot p_{\theta} \rangle - \langle p_{\theta} \rangle \langle p_{\theta} \rangle\) eV/c^2
cov_ptheta__Lz \(\langle p_{\theta} \cdot L_z \rangle - \langle p_{\theta} \rangle \langle L_z \rangle\) eV/c*m*eV/c
cov_ptheta__gamma \(\langle p_{\theta} \cdot \gamma \rangle - \langle p_{\theta} \rangle \langle \gamma \rangle\) eV/c
cov_ptheta__beta \(\langle p_{\theta} \cdot \beta \rangle - \langle p_{\theta} \rangle \langle \beta \rangle\) eV/c
cov_ptheta__beta_x \(\langle p_{\theta} \cdot \beta_x \rangle - \langle p_{\theta} \rangle \langle \beta_x \rangle\) eV/c
cov_ptheta__beta_y \(\langle p_{\theta} \cdot \beta_y \rangle - \langle p_{\theta} \rangle \langle \beta_y \rangle\) eV/c
cov_ptheta__beta_z \(\langle p_{\theta} \cdot \beta_z \rangle - \langle p_{\theta} \rangle \langle \beta_z \rangle\) eV/c
cov_ptheta__x_bar \(\langle p_{\theta} \cdot \overline{x} \rangle - \langle p_{\theta} \rangle \langle \overline{x} \rangle\) eV/c*sqrt(m)
cov_ptheta__px_bar \(\langle p_{\theta} \cdot \overline{p_x} \rangle - \langle p_{\theta} \rangle \langle \overline{p_x} \rangle\) eV/c*sqrt(m)
cov_ptheta__Jx \(\langle p_{\theta} \cdot J_x \rangle - \langle p_{\theta} \rangle \langle J_x \rangle\) eV/c*m
cov_ptheta__Jy \(\langle p_{\theta} \cdot J_y \rangle - \langle p_{\theta} \rangle \langle J_y \rangle\) eV/c*m
cov_Lz__x \(\langle L_z \cdot x \rangle - \langle L_z \rangle \langle x \rangle\) m*eV/c*m
cov_Lz__y \(\langle L_z \cdot y \rangle - \langle L_z \rangle \langle y \rangle\) m*eV/c*m
cov_Lz__z \(\langle L_z \cdot z \rangle - \langle L_z \rangle \langle z \rangle\) m*eV/c*m
cov_Lz__px \(\langle L_z \cdot p_x \rangle - \langle L_z \rangle \langle p_x \rangle\) m*eV/c*eV/c
cov_Lz__py \(\langle L_z \cdot p_y \rangle - \langle L_z \rangle \langle p_y \rangle\) m*eV/c*eV/c
cov_Lz__pz \(\langle L_z \cdot p_z \rangle - \langle L_z \rangle \langle p_z \rangle\) m*eV/c*eV/c
cov_Lz__t \(\langle L_z \cdot t \rangle - \langle L_z \rangle \langle t \rangle\) m*eV/c*s
cov_Lz__status \(\langle L_z \cdot \text{status} \rangle - \langle L_z \rangle \langle \text{status} \rangle\) m*eV/c
cov_Lz__weight \(\langle L_z \cdot w \rangle - \langle L_z \rangle \langle w \rangle\) m*eV/c*C
cov_Lz__id \(\langle L_z \cdot \text{id} \rangle - \langle L_z \rangle \langle \text{id} \rangle\) m*eV/c
cov_Lz__z/c \(\langle L_z \cdot z/c \rangle - \langle L_z \rangle \langle z/c \rangle\) m*eV/c*s
cov_Lz__p \(\langle L_z \cdot p \rangle - \langle L_z \rangle \langle p \rangle\) m*eV/c*eV/c
cov_Lz__energy \(\langle L_z \cdot E \rangle - \langle L_z \rangle \langle E \rangle\) m*eV/c*eV
cov_Lz__kinetic_energy \(\langle L_z \cdot E_\text{kinetic} \rangle - \langle L_z \rangle \langle E_\text{kinetic} \rangle\) m*eV/c*eV
cov_Lz__xp \(\langle L_z \cdot x' \rangle - \langle L_z \rangle \langle x' \rangle\) m*eV/c*rad
cov_Lz__yp \(\langle L_z \cdot y' \rangle - \langle L_z \rangle \langle y' \rangle\) m*eV/c*rad
cov_Lz__higher_order_energy \(\langle L_z \cdot E_{(2)} \rangle - \langle L_z \rangle \langle E_{(2)} \rangle\) m*eV/c*eV
cov_Lz__r \(\langle L_z \cdot r \rangle - \langle L_z \rangle \langle r \rangle\) m*eV/c*m
cov_Lz__theta \(\langle L_z \cdot \theta \rangle - \langle L_z \rangle \langle \theta \rangle\) m*eV/c*rad
cov_Lz__pr \(\langle L_z \cdot p_r \rangle - \langle L_z \rangle \langle p_r \rangle\) m*eV/c*eV/c
cov_Lz__ptheta \(\langle L_z \cdot p_{\theta} \rangle - \langle L_z \rangle \langle p_{\theta} \rangle\) m*eV/c*eV/c
cov_Lz__Lz \(\langle L_z \cdot L_z \rangle - \langle L_z \rangle \langle L_z \rangle\) m*eV/c^2
cov_Lz__gamma \(\langle L_z \cdot \gamma \rangle - \langle L_z \rangle \langle \gamma \rangle\) m*eV/c
cov_Lz__beta \(\langle L_z \cdot \beta \rangle - \langle L_z \rangle \langle \beta \rangle\) m*eV/c
cov_Lz__beta_x \(\langle L_z \cdot \beta_x \rangle - \langle L_z \rangle \langle \beta_x \rangle\) m*eV/c
cov_Lz__beta_y \(\langle L_z \cdot \beta_y \rangle - \langle L_z \rangle \langle \beta_y \rangle\) m*eV/c
cov_Lz__beta_z \(\langle L_z \cdot \beta_z \rangle - \langle L_z \rangle \langle \beta_z \rangle\) m*eV/c
cov_Lz__x_bar \(\langle L_z \cdot \overline{x} \rangle - \langle L_z \rangle \langle \overline{x} \rangle\) m*eV/c*sqrt(m)
cov_Lz__px_bar \(\langle L_z \cdot \overline{p_x} \rangle - \langle L_z \rangle \langle \overline{p_x} \rangle\) m*eV/c*sqrt(m)
cov_Lz__Jx \(\langle L_z \cdot J_x \rangle - \langle L_z \rangle \langle J_x \rangle\) m*eV/c*m
cov_Lz__Jy \(\langle L_z \cdot J_y \rangle - \langle L_z \rangle \langle J_y \rangle\) m*eV/c*m
cov_gamma__x \(\langle \gamma \cdot x \rangle - \langle \gamma \rangle \langle x \rangle\) m
cov_gamma__y \(\langle \gamma \cdot y \rangle - \langle \gamma \rangle \langle y \rangle\) m
cov_gamma__z \(\langle \gamma \cdot z \rangle - \langle \gamma \rangle \langle z \rangle\) m
cov_gamma__px \(\langle \gamma \cdot p_x \rangle - \langle \gamma \rangle \langle p_x \rangle\) eV/c
cov_gamma__py \(\langle \gamma \cdot p_y \rangle - \langle \gamma \rangle \langle p_y \rangle\) eV/c
cov_gamma__pz \(\langle \gamma \cdot p_z \rangle - \langle \gamma \rangle \langle p_z \rangle\) eV/c
cov_gamma__t \(\langle \gamma \cdot t \rangle - \langle \gamma \rangle \langle t \rangle\) s
cov_gamma__status \(\langle \gamma \cdot \text{status} \rangle - \langle \gamma \rangle \langle \text{status} \rangle\) 1
cov_gamma__weight \(\langle \gamma \cdot w \rangle - \langle \gamma \rangle \langle w \rangle\) C
cov_gamma__id \(\langle \gamma \cdot \text{id} \rangle - \langle \gamma \rangle \langle \text{id} \rangle\) 1
cov_gamma__z/c \(\langle \gamma \cdot z/c \rangle - \langle \gamma \rangle \langle z/c \rangle\) s
cov_gamma__p \(\langle \gamma \cdot p \rangle - \langle \gamma \rangle \langle p \rangle\) eV/c
cov_gamma__energy \(\langle \gamma \cdot E \rangle - \langle \gamma \rangle \langle E \rangle\) eV
cov_gamma__kinetic_energy \(\langle \gamma \cdot E_\text{kinetic} \rangle - \langle \gamma \rangle \langle E_\text{kinetic} \rangle\) eV
cov_gamma__xp \(\langle \gamma \cdot x' \rangle - \langle \gamma \rangle \langle x' \rangle\) rad
cov_gamma__yp \(\langle \gamma \cdot y' \rangle - \langle \gamma \rangle \langle y' \rangle\) rad
cov_gamma__higher_order_energy \(\langle \gamma \cdot E_{(2)} \rangle - \langle \gamma \rangle \langle E_{(2)} \rangle\) eV
cov_gamma__r \(\langle \gamma \cdot r \rangle - \langle \gamma \rangle \langle r \rangle\) m
cov_gamma__theta \(\langle \gamma \cdot \theta \rangle - \langle \gamma \rangle \langle \theta \rangle\) rad
cov_gamma__pr \(\langle \gamma \cdot p_r \rangle - \langle \gamma \rangle \langle p_r \rangle\) eV/c
cov_gamma__ptheta \(\langle \gamma \cdot p_{\theta} \rangle - \langle \gamma \rangle \langle p_{\theta} \rangle\) eV/c
cov_gamma__Lz \(\langle \gamma \cdot L_z \rangle - \langle \gamma \rangle \langle L_z \rangle\) m*eV/c
cov_gamma__gamma \(\langle \gamma \cdot \gamma \rangle - \langle \gamma \rangle \langle \gamma \rangle\) 1
cov_gamma__beta \(\langle \gamma \cdot \beta \rangle - \langle \gamma \rangle \langle \beta \rangle\) 1
cov_gamma__beta_x \(\langle \gamma \cdot \beta_x \rangle - \langle \gamma \rangle \langle \beta_x \rangle\) 1
cov_gamma__beta_y \(\langle \gamma \cdot \beta_y \rangle - \langle \gamma \rangle \langle \beta_y \rangle\) 1
cov_gamma__beta_z \(\langle \gamma \cdot \beta_z \rangle - \langle \gamma \rangle \langle \beta_z \rangle\) 1
cov_gamma__x_bar \(\langle \gamma \cdot \overline{x} \rangle - \langle \gamma \rangle \langle \overline{x} \rangle\) sqrt(m)
cov_gamma__px_bar \(\langle \gamma \cdot \overline{p_x} \rangle - \langle \gamma \rangle \langle \overline{p_x} \rangle\) sqrt(m)
cov_gamma__Jx \(\langle \gamma \cdot J_x \rangle - \langle \gamma \rangle \langle J_x \rangle\) m
cov_gamma__Jy \(\langle \gamma \cdot J_y \rangle - \langle \gamma \rangle \langle J_y \rangle\) m
cov_beta__x \(\langle \beta \cdot x \rangle - \langle \beta \rangle \langle x \rangle\) m
cov_beta__y \(\langle \beta \cdot y \rangle - \langle \beta \rangle \langle y \rangle\) m
cov_beta__z \(\langle \beta \cdot z \rangle - \langle \beta \rangle \langle z \rangle\) m
cov_beta__px \(\langle \beta \cdot p_x \rangle - \langle \beta \rangle \langle p_x \rangle\) eV/c
cov_beta__py \(\langle \beta \cdot p_y \rangle - \langle \beta \rangle \langle p_y \rangle\) eV/c
cov_beta__pz \(\langle \beta \cdot p_z \rangle - \langle \beta \rangle \langle p_z \rangle\) eV/c
cov_beta__t \(\langle \beta \cdot t \rangle - \langle \beta \rangle \langle t \rangle\) s
cov_beta__status \(\langle \beta \cdot \text{status} \rangle - \langle \beta \rangle \langle \text{status} \rangle\) 1
cov_beta__weight \(\langle \beta \cdot w \rangle - \langle \beta \rangle \langle w \rangle\) C
cov_beta__id \(\langle \beta \cdot \text{id} \rangle - \langle \beta \rangle \langle \text{id} \rangle\) 1
cov_beta__z/c \(\langle \beta \cdot z/c \rangle - \langle \beta \rangle \langle z/c \rangle\) s
cov_beta__p \(\langle \beta \cdot p \rangle - \langle \beta \rangle \langle p \rangle\) eV/c
cov_beta__energy \(\langle \beta \cdot E \rangle - \langle \beta \rangle \langle E \rangle\) eV
cov_beta__kinetic_energy \(\langle \beta \cdot E_\text{kinetic} \rangle - \langle \beta \rangle \langle E_\text{kinetic} \rangle\) eV
cov_beta__xp \(\langle \beta \cdot x' \rangle - \langle \beta \rangle \langle x' \rangle\) rad
cov_beta__yp \(\langle \beta \cdot y' \rangle - \langle \beta \rangle \langle y' \rangle\) rad
cov_beta__higher_order_energy \(\langle \beta \cdot E_{(2)} \rangle - \langle \beta \rangle \langle E_{(2)} \rangle\) eV
cov_beta__r \(\langle \beta \cdot r \rangle - \langle \beta \rangle \langle r \rangle\) m
cov_beta__theta \(\langle \beta \cdot \theta \rangle - \langle \beta \rangle \langle \theta \rangle\) rad
cov_beta__pr \(\langle \beta \cdot p_r \rangle - \langle \beta \rangle \langle p_r \rangle\) eV/c
cov_beta__ptheta \(\langle \beta \cdot p_{\theta} \rangle - \langle \beta \rangle \langle p_{\theta} \rangle\) eV/c
cov_beta__Lz \(\langle \beta \cdot L_z \rangle - \langle \beta \rangle \langle L_z \rangle\) m*eV/c
cov_beta__gamma \(\langle \beta \cdot \gamma \rangle - \langle \beta \rangle \langle \gamma \rangle\) 1
cov_beta__beta \(\langle \beta \cdot \beta \rangle - \langle \beta \rangle \langle \beta \rangle\) 1
cov_beta__beta_x \(\langle \beta \cdot \beta_x \rangle - \langle \beta \rangle \langle \beta_x \rangle\) 1
cov_beta__beta_y \(\langle \beta \cdot \beta_y \rangle - \langle \beta \rangle \langle \beta_y \rangle\) 1
cov_beta__beta_z \(\langle \beta \cdot \beta_z \rangle - \langle \beta \rangle \langle \beta_z \rangle\) 1
cov_beta__x_bar \(\langle \beta \cdot \overline{x} \rangle - \langle \beta \rangle \langle \overline{x} \rangle\) sqrt(m)
cov_beta__px_bar \(\langle \beta \cdot \overline{p_x} \rangle - \langle \beta \rangle \langle \overline{p_x} \rangle\) sqrt(m)
cov_beta__Jx \(\langle \beta \cdot J_x \rangle - \langle \beta \rangle \langle J_x \rangle\) m
cov_beta__Jy \(\langle \beta \cdot J_y \rangle - \langle \beta \rangle \langle J_y \rangle\) m
cov_beta_x__x \(\langle \beta_x \cdot x \rangle - \langle \beta_x \rangle \langle x \rangle\) m
cov_beta_x__y \(\langle \beta_x \cdot y \rangle - \langle \beta_x \rangle \langle y \rangle\) m
cov_beta_x__z \(\langle \beta_x \cdot z \rangle - \langle \beta_x \rangle \langle z \rangle\) m
cov_beta_x__px \(\langle \beta_x \cdot p_x \rangle - \langle \beta_x \rangle \langle p_x \rangle\) eV/c
cov_beta_x__py \(\langle \beta_x \cdot p_y \rangle - \langle \beta_x \rangle \langle p_y \rangle\) eV/c
cov_beta_x__pz \(\langle \beta_x \cdot p_z \rangle - \langle \beta_x \rangle \langle p_z \rangle\) eV/c
cov_beta_x__t \(\langle \beta_x \cdot t \rangle - \langle \beta_x \rangle \langle t \rangle\) s
cov_beta_x__status \(\langle \beta_x \cdot \text{status} \rangle - \langle \beta_x \rangle \langle \text{status} \rangle\) 1
cov_beta_x__weight \(\langle \beta_x \cdot w \rangle - \langle \beta_x \rangle \langle w \rangle\) C
cov_beta_x__id \(\langle \beta_x \cdot \text{id} \rangle - \langle \beta_x \rangle \langle \text{id} \rangle\) 1
cov_beta_x__z/c \(\langle \beta_x \cdot z/c \rangle - \langle \beta_x \rangle \langle z/c \rangle\) s
cov_beta_x__p \(\langle \beta_x \cdot p \rangle - \langle \beta_x \rangle \langle p \rangle\) eV/c
cov_beta_x__energy \(\langle \beta_x \cdot E \rangle - \langle \beta_x \rangle \langle E \rangle\) eV
cov_beta_x__kinetic_energy \(\langle \beta_x \cdot E_\text{kinetic} \rangle - \langle \beta_x \rangle \langle E_\text{kinetic} \rangle\) eV
cov_beta_x__xp \(\langle \beta_x \cdot x' \rangle - \langle \beta_x \rangle \langle x' \rangle\) rad
cov_beta_x__yp \(\langle \beta_x \cdot y' \rangle - \langle \beta_x \rangle \langle y' \rangle\) rad
cov_beta_x__higher_order_energy \(\langle \beta_x \cdot E_{(2)} \rangle - \langle \beta_x \rangle \langle E_{(2)} \rangle\) eV
cov_beta_x__r \(\langle \beta_x \cdot r \rangle - \langle \beta_x \rangle \langle r \rangle\) m
cov_beta_x__theta \(\langle \beta_x \cdot \theta \rangle - \langle \beta_x \rangle \langle \theta \rangle\) rad
cov_beta_x__pr \(\langle \beta_x \cdot p_r \rangle - \langle \beta_x \rangle \langle p_r \rangle\) eV/c
cov_beta_x__ptheta \(\langle \beta_x \cdot p_{\theta} \rangle - \langle \beta_x \rangle \langle p_{\theta} \rangle\) eV/c
cov_beta_x__Lz \(\langle \beta_x \cdot L_z \rangle - \langle \beta_x \rangle \langle L_z \rangle\) m*eV/c
cov_beta_x__gamma \(\langle \beta_x \cdot \gamma \rangle - \langle \beta_x \rangle \langle \gamma \rangle\) 1
cov_beta_x__beta \(\langle \beta_x \cdot \beta \rangle - \langle \beta_x \rangle \langle \beta \rangle\) 1
cov_beta_x__beta_x \(\langle \beta_x \cdot \beta_x \rangle - \langle \beta_x \rangle \langle \beta_x \rangle\) 1
cov_beta_x__beta_y \(\langle \beta_x \cdot \beta_y \rangle - \langle \beta_x \rangle \langle \beta_y \rangle\) 1
cov_beta_x__beta_z \(\langle \beta_x \cdot \beta_z \rangle - \langle \beta_x \rangle \langle \beta_z \rangle\) 1
cov_beta_x__x_bar \(\langle \beta_x \cdot \overline{x} \rangle - \langle \beta_x \rangle \langle \overline{x} \rangle\) sqrt(m)
cov_beta_x__px_bar \(\langle \beta_x \cdot \overline{p_x} \rangle - \langle \beta_x \rangle \langle \overline{p_x} \rangle\) sqrt(m)
cov_beta_x__Jx \(\langle \beta_x \cdot J_x \rangle - \langle \beta_x \rangle \langle J_x \rangle\) m
cov_beta_x__Jy \(\langle \beta_x \cdot J_y \rangle - \langle \beta_x \rangle \langle J_y \rangle\) m
cov_beta_y__x \(\langle \beta_y \cdot x \rangle - \langle \beta_y \rangle \langle x \rangle\) m
cov_beta_y__y \(\langle \beta_y \cdot y \rangle - \langle \beta_y \rangle \langle y \rangle\) m
cov_beta_y__z \(\langle \beta_y \cdot z \rangle - \langle \beta_y \rangle \langle z \rangle\) m
cov_beta_y__px \(\langle \beta_y \cdot p_x \rangle - \langle \beta_y \rangle \langle p_x \rangle\) eV/c
cov_beta_y__py \(\langle \beta_y \cdot p_y \rangle - \langle \beta_y \rangle \langle p_y \rangle\) eV/c
cov_beta_y__pz \(\langle \beta_y \cdot p_z \rangle - \langle \beta_y \rangle \langle p_z \rangle\) eV/c
cov_beta_y__t \(\langle \beta_y \cdot t \rangle - \langle \beta_y \rangle \langle t \rangle\) s
cov_beta_y__status \(\langle \beta_y \cdot \text{status} \rangle - \langle \beta_y \rangle \langle \text{status} \rangle\) 1
cov_beta_y__weight \(\langle \beta_y \cdot w \rangle - \langle \beta_y \rangle \langle w \rangle\) C
cov_beta_y__id \(\langle \beta_y \cdot \text{id} \rangle - \langle \beta_y \rangle \langle \text{id} \rangle\) 1
cov_beta_y__z/c \(\langle \beta_y \cdot z/c \rangle - \langle \beta_y \rangle \langle z/c \rangle\) s
cov_beta_y__p \(\langle \beta_y \cdot p \rangle - \langle \beta_y \rangle \langle p \rangle\) eV/c
cov_beta_y__energy \(\langle \beta_y \cdot E \rangle - \langle \beta_y \rangle \langle E \rangle\) eV
cov_beta_y__kinetic_energy \(\langle \beta_y \cdot E_\text{kinetic} \rangle - \langle \beta_y \rangle \langle E_\text{kinetic} \rangle\) eV
cov_beta_y__xp \(\langle \beta_y \cdot x' \rangle - \langle \beta_y \rangle \langle x' \rangle\) rad
cov_beta_y__yp \(\langle \beta_y \cdot y' \rangle - \langle \beta_y \rangle \langle y' \rangle\) rad
cov_beta_y__higher_order_energy \(\langle \beta_y \cdot E_{(2)} \rangle - \langle \beta_y \rangle \langle E_{(2)} \rangle\) eV
cov_beta_y__r \(\langle \beta_y \cdot r \rangle - \langle \beta_y \rangle \langle r \rangle\) m
cov_beta_y__theta \(\langle \beta_y \cdot \theta \rangle - \langle \beta_y \rangle \langle \theta \rangle\) rad
cov_beta_y__pr \(\langle \beta_y \cdot p_r \rangle - \langle \beta_y \rangle \langle p_r \rangle\) eV/c
cov_beta_y__ptheta \(\langle \beta_y \cdot p_{\theta} \rangle - \langle \beta_y \rangle \langle p_{\theta} \rangle\) eV/c
cov_beta_y__Lz \(\langle \beta_y \cdot L_z \rangle - \langle \beta_y \rangle \langle L_z \rangle\) m*eV/c
cov_beta_y__gamma \(\langle \beta_y \cdot \gamma \rangle - \langle \beta_y \rangle \langle \gamma \rangle\) 1
cov_beta_y__beta \(\langle \beta_y \cdot \beta \rangle - \langle \beta_y \rangle \langle \beta \rangle\) 1
cov_beta_y__beta_x \(\langle \beta_y \cdot \beta_x \rangle - \langle \beta_y \rangle \langle \beta_x \rangle\) 1
cov_beta_y__beta_y \(\langle \beta_y \cdot \beta_y \rangle - \langle \beta_y \rangle \langle \beta_y \rangle\) 1
cov_beta_y__beta_z \(\langle \beta_y \cdot \beta_z \rangle - \langle \beta_y \rangle \langle \beta_z \rangle\) 1
cov_beta_y__x_bar \(\langle \beta_y \cdot \overline{x} \rangle - \langle \beta_y \rangle \langle \overline{x} \rangle\) sqrt(m)
cov_beta_y__px_bar \(\langle \beta_y \cdot \overline{p_x} \rangle - \langle \beta_y \rangle \langle \overline{p_x} \rangle\) sqrt(m)
cov_beta_y__Jx \(\langle \beta_y \cdot J_x \rangle - \langle \beta_y \rangle \langle J_x \rangle\) m
cov_beta_y__Jy \(\langle \beta_y \cdot J_y \rangle - \langle \beta_y \rangle \langle J_y \rangle\) m
cov_beta_z__x \(\langle \beta_z \cdot x \rangle - \langle \beta_z \rangle \langle x \rangle\) m
cov_beta_z__y \(\langle \beta_z \cdot y \rangle - \langle \beta_z \rangle \langle y \rangle\) m
cov_beta_z__z \(\langle \beta_z \cdot z \rangle - \langle \beta_z \rangle \langle z \rangle\) m
cov_beta_z__px \(\langle \beta_z \cdot p_x \rangle - \langle \beta_z \rangle \langle p_x \rangle\) eV/c
cov_beta_z__py \(\langle \beta_z \cdot p_y \rangle - \langle \beta_z \rangle \langle p_y \rangle\) eV/c
cov_beta_z__pz \(\langle \beta_z \cdot p_z \rangle - \langle \beta_z \rangle \langle p_z \rangle\) eV/c
cov_beta_z__t \(\langle \beta_z \cdot t \rangle - \langle \beta_z \rangle \langle t \rangle\) s
cov_beta_z__status \(\langle \beta_z \cdot \text{status} \rangle - \langle \beta_z \rangle \langle \text{status} \rangle\) 1
cov_beta_z__weight \(\langle \beta_z \cdot w \rangle - \langle \beta_z \rangle \langle w \rangle\) C
cov_beta_z__id \(\langle \beta_z \cdot \text{id} \rangle - \langle \beta_z \rangle \langle \text{id} \rangle\) 1
cov_beta_z__z/c \(\langle \beta_z \cdot z/c \rangle - \langle \beta_z \rangle \langle z/c \rangle\) s
cov_beta_z__p \(\langle \beta_z \cdot p \rangle - \langle \beta_z \rangle \langle p \rangle\) eV/c
cov_beta_z__energy \(\langle \beta_z \cdot E \rangle - \langle \beta_z \rangle \langle E \rangle\) eV
cov_beta_z__kinetic_energy \(\langle \beta_z \cdot E_\text{kinetic} \rangle - \langle \beta_z \rangle \langle E_\text{kinetic} \rangle\) eV
cov_beta_z__xp \(\langle \beta_z \cdot x' \rangle - \langle \beta_z \rangle \langle x' \rangle\) rad
cov_beta_z__yp \(\langle \beta_z \cdot y' \rangle - \langle \beta_z \rangle \langle y' \rangle\) rad
cov_beta_z__higher_order_energy \(\langle \beta_z \cdot E_{(2)} \rangle - \langle \beta_z \rangle \langle E_{(2)} \rangle\) eV
cov_beta_z__r \(\langle \beta_z \cdot r \rangle - \langle \beta_z \rangle \langle r \rangle\) m
cov_beta_z__theta \(\langle \beta_z \cdot \theta \rangle - \langle \beta_z \rangle \langle \theta \rangle\) rad
cov_beta_z__pr \(\langle \beta_z \cdot p_r \rangle - \langle \beta_z \rangle \langle p_r \rangle\) eV/c
cov_beta_z__ptheta \(\langle \beta_z \cdot p_{\theta} \rangle - \langle \beta_z \rangle \langle p_{\theta} \rangle\) eV/c
cov_beta_z__Lz \(\langle \beta_z \cdot L_z \rangle - \langle \beta_z \rangle \langle L_z \rangle\) m*eV/c
cov_beta_z__gamma \(\langle \beta_z \cdot \gamma \rangle - \langle \beta_z \rangle \langle \gamma \rangle\) 1
cov_beta_z__beta \(\langle \beta_z \cdot \beta \rangle - \langle \beta_z \rangle \langle \beta \rangle\) 1
cov_beta_z__beta_x \(\langle \beta_z \cdot \beta_x \rangle - \langle \beta_z \rangle \langle \beta_x \rangle\) 1
cov_beta_z__beta_y \(\langle \beta_z \cdot \beta_y \rangle - \langle \beta_z \rangle \langle \beta_y \rangle\) 1
cov_beta_z__beta_z \(\langle \beta_z \cdot \beta_z \rangle - \langle \beta_z \rangle \langle \beta_z \rangle\) 1
cov_beta_z__x_bar \(\langle \beta_z \cdot \overline{x} \rangle - \langle \beta_z \rangle \langle \overline{x} \rangle\) sqrt(m)
cov_beta_z__px_bar \(\langle \beta_z \cdot \overline{p_x} \rangle - \langle \beta_z \rangle \langle \overline{p_x} \rangle\) sqrt(m)
cov_beta_z__Jx \(\langle \beta_z \cdot J_x \rangle - \langle \beta_z \rangle \langle J_x \rangle\) m
cov_beta_z__Jy \(\langle \beta_z \cdot J_y \rangle - \langle \beta_z \rangle \langle J_y \rangle\) m
cov_x_bar__x \(\langle \overline{x} \cdot x \rangle - \langle \overline{x} \rangle \langle x \rangle\) sqrt(m)*m
cov_x_bar__y \(\langle \overline{x} \cdot y \rangle - \langle \overline{x} \rangle \langle y \rangle\) sqrt(m)*m
cov_x_bar__z \(\langle \overline{x} \cdot z \rangle - \langle \overline{x} \rangle \langle z \rangle\) sqrt(m)*m
cov_x_bar__px \(\langle \overline{x} \cdot p_x \rangle - \langle \overline{x} \rangle \langle p_x \rangle\) sqrt(m)*eV/c
cov_x_bar__py \(\langle \overline{x} \cdot p_y \rangle - \langle \overline{x} \rangle \langle p_y \rangle\) sqrt(m)*eV/c
cov_x_bar__pz \(\langle \overline{x} \cdot p_z \rangle - \langle \overline{x} \rangle \langle p_z \rangle\) sqrt(m)*eV/c
cov_x_bar__t \(\langle \overline{x} \cdot t \rangle - \langle \overline{x} \rangle \langle t \rangle\) sqrt(m)*s
cov_x_bar__status \(\langle \overline{x} \cdot \text{status} \rangle - \langle \overline{x} \rangle \langle \text{status} \rangle\) sqrt(m)
cov_x_bar__weight \(\langle \overline{x} \cdot w \rangle - \langle \overline{x} \rangle \langle w \rangle\) sqrt(m)*C
cov_x_bar__id \(\langle \overline{x} \cdot \text{id} \rangle - \langle \overline{x} \rangle \langle \text{id} \rangle\) sqrt(m)
cov_x_bar__z/c \(\langle \overline{x} \cdot z/c \rangle - \langle \overline{x} \rangle \langle z/c \rangle\) sqrt(m)*s
cov_x_bar__p \(\langle \overline{x} \cdot p \rangle - \langle \overline{x} \rangle \langle p \rangle\) sqrt(m)*eV/c
cov_x_bar__energy \(\langle \overline{x} \cdot E \rangle - \langle \overline{x} \rangle \langle E \rangle\) sqrt(m)*eV
cov_x_bar__kinetic_energy \(\langle \overline{x} \cdot E_\text{kinetic} \rangle - \langle \overline{x} \rangle \langle E_\text{kinetic} \rangle\) sqrt(m)*eV
cov_x_bar__xp \(\langle \overline{x} \cdot x' \rangle - \langle \overline{x} \rangle \langle x' \rangle\) sqrt(m)*rad
cov_x_bar__yp \(\langle \overline{x} \cdot y' \rangle - \langle \overline{x} \rangle \langle y' \rangle\) sqrt(m)*rad
cov_x_bar__higher_order_energy \(\langle \overline{x} \cdot E_{(2)} \rangle - \langle \overline{x} \rangle \langle E_{(2)} \rangle\) sqrt(m)*eV
cov_x_bar__r \(\langle \overline{x} \cdot r \rangle - \langle \overline{x} \rangle \langle r \rangle\) sqrt(m)*m
cov_x_bar__theta \(\langle \overline{x} \cdot \theta \rangle - \langle \overline{x} \rangle \langle \theta \rangle\) sqrt(m)*rad
cov_x_bar__pr \(\langle \overline{x} \cdot p_r \rangle - \langle \overline{x} \rangle \langle p_r \rangle\) sqrt(m)*eV/c
cov_x_bar__ptheta \(\langle \overline{x} \cdot p_{\theta} \rangle - \langle \overline{x} \rangle \langle p_{\theta} \rangle\) sqrt(m)*eV/c
cov_x_bar__Lz \(\langle \overline{x} \cdot L_z \rangle - \langle \overline{x} \rangle \langle L_z \rangle\) sqrt(m)*m*eV/c
cov_x_bar__gamma \(\langle \overline{x} \cdot \gamma \rangle - \langle \overline{x} \rangle \langle \gamma \rangle\) sqrt(m)
cov_x_bar__beta \(\langle \overline{x} \cdot \beta \rangle - \langle \overline{x} \rangle \langle \beta \rangle\) sqrt(m)
cov_x_bar__beta_x \(\langle \overline{x} \cdot \beta_x \rangle - \langle \overline{x} \rangle \langle \beta_x \rangle\) sqrt(m)
cov_x_bar__beta_y \(\langle \overline{x} \cdot \beta_y \rangle - \langle \overline{x} \rangle \langle \beta_y \rangle\) sqrt(m)
cov_x_bar__beta_z \(\langle \overline{x} \cdot \beta_z \rangle - \langle \overline{x} \rangle \langle \beta_z \rangle\) sqrt(m)
cov_x_bar__x_bar \(\langle \overline{x} \cdot \overline{x} \rangle - \langle \overline{x} \rangle \langle \overline{x} \rangle\) sqrt(m)^2
cov_x_bar__px_bar \(\langle \overline{x} \cdot \overline{p_x} \rangle - \langle \overline{x} \rangle \langle \overline{p_x} \rangle\) sqrt(m)^2
cov_x_bar__Jx \(\langle \overline{x} \cdot J_x \rangle - \langle \overline{x} \rangle \langle J_x \rangle\) sqrt(m)*m
cov_x_bar__Jy \(\langle \overline{x} \cdot J_y \rangle - \langle \overline{x} \rangle \langle J_y \rangle\) sqrt(m)*m
cov_px_bar__x \(\langle \overline{p_x} \cdot x \rangle - \langle \overline{p_x} \rangle \langle x \rangle\) sqrt(m)*m
cov_px_bar__y \(\langle \overline{p_x} \cdot y \rangle - \langle \overline{p_x} \rangle \langle y \rangle\) sqrt(m)*m
cov_px_bar__z \(\langle \overline{p_x} \cdot z \rangle - \langle \overline{p_x} \rangle \langle z \rangle\) sqrt(m)*m
cov_px_bar__px \(\langle \overline{p_x} \cdot p_x \rangle - \langle \overline{p_x} \rangle \langle p_x \rangle\) sqrt(m)*eV/c
cov_px_bar__py \(\langle \overline{p_x} \cdot p_y \rangle - \langle \overline{p_x} \rangle \langle p_y \rangle\) sqrt(m)*eV/c
cov_px_bar__pz \(\langle \overline{p_x} \cdot p_z \rangle - \langle \overline{p_x} \rangle \langle p_z \rangle\) sqrt(m)*eV/c
cov_px_bar__t \(\langle \overline{p_x} \cdot t \rangle - \langle \overline{p_x} \rangle \langle t \rangle\) sqrt(m)*s
cov_px_bar__status \(\langle \overline{p_x} \cdot \text{status} \rangle - \langle \overline{p_x} \rangle \langle \text{status} \rangle\) sqrt(m)
cov_px_bar__weight \(\langle \overline{p_x} \cdot w \rangle - \langle \overline{p_x} \rangle \langle w \rangle\) sqrt(m)*C
cov_px_bar__id \(\langle \overline{p_x} \cdot \text{id} \rangle - \langle \overline{p_x} \rangle \langle \text{id} \rangle\) sqrt(m)
cov_px_bar__z/c \(\langle \overline{p_x} \cdot z/c \rangle - \langle \overline{p_x} \rangle \langle z/c \rangle\) sqrt(m)*s
cov_px_bar__p \(\langle \overline{p_x} \cdot p \rangle - \langle \overline{p_x} \rangle \langle p \rangle\) sqrt(m)*eV/c
cov_px_bar__energy \(\langle \overline{p_x} \cdot E \rangle - \langle \overline{p_x} \rangle \langle E \rangle\) sqrt(m)*eV
cov_px_bar__kinetic_energy \(\langle \overline{p_x} \cdot E_\text{kinetic} \rangle - \langle \overline{p_x} \rangle \langle E_\text{kinetic} \rangle\) sqrt(m)*eV
cov_px_bar__xp \(\langle \overline{p_x} \cdot x' \rangle - \langle \overline{p_x} \rangle \langle x' \rangle\) sqrt(m)*rad
cov_px_bar__yp \(\langle \overline{p_x} \cdot y' \rangle - \langle \overline{p_x} \rangle \langle y' \rangle\) sqrt(m)*rad
cov_px_bar__higher_order_energy \(\langle \overline{p_x} \cdot E_{(2)} \rangle - \langle \overline{p_x} \rangle \langle E_{(2)} \rangle\) sqrt(m)*eV
cov_px_bar__r \(\langle \overline{p_x} \cdot r \rangle - \langle \overline{p_x} \rangle \langle r \rangle\) sqrt(m)*m
cov_px_bar__theta \(\langle \overline{p_x} \cdot \theta \rangle - \langle \overline{p_x} \rangle \langle \theta \rangle\) sqrt(m)*rad
cov_px_bar__pr \(\langle \overline{p_x} \cdot p_r \rangle - \langle \overline{p_x} \rangle \langle p_r \rangle\) sqrt(m)*eV/c
cov_px_bar__ptheta \(\langle \overline{p_x} \cdot p_{\theta} \rangle - \langle \overline{p_x} \rangle \langle p_{\theta} \rangle\) sqrt(m)*eV/c
cov_px_bar__Lz \(\langle \overline{p_x} \cdot L_z \rangle - \langle \overline{p_x} \rangle \langle L_z \rangle\) sqrt(m)*m*eV/c
cov_px_bar__gamma \(\langle \overline{p_x} \cdot \gamma \rangle - \langle \overline{p_x} \rangle \langle \gamma \rangle\) sqrt(m)
cov_px_bar__beta \(\langle \overline{p_x} \cdot \beta \rangle - \langle \overline{p_x} \rangle \langle \beta \rangle\) sqrt(m)
cov_px_bar__beta_x \(\langle \overline{p_x} \cdot \beta_x \rangle - \langle \overline{p_x} \rangle \langle \beta_x \rangle\) sqrt(m)
cov_px_bar__beta_y \(\langle \overline{p_x} \cdot \beta_y \rangle - \langle \overline{p_x} \rangle \langle \beta_y \rangle\) sqrt(m)
cov_px_bar__beta_z \(\langle \overline{p_x} \cdot \beta_z \rangle - \langle \overline{p_x} \rangle \langle \beta_z \rangle\) sqrt(m)
cov_px_bar__x_bar \(\langle \overline{p_x} \cdot \overline{x} \rangle - \langle \overline{p_x} \rangle \langle \overline{x} \rangle\) sqrt(m)^2
cov_px_bar__px_bar \(\langle \overline{p_x} \cdot \overline{p_x} \rangle - \langle \overline{p_x} \rangle \langle \overline{p_x} \rangle\) sqrt(m)^2
cov_px_bar__Jx \(\langle \overline{p_x} \cdot J_x \rangle - \langle \overline{p_x} \rangle \langle J_x \rangle\) sqrt(m)*m
cov_px_bar__Jy \(\langle \overline{p_x} \cdot J_y \rangle - \langle \overline{p_x} \rangle \langle J_y \rangle\) sqrt(m)*m
cov_Jx__x \(\langle J_x \cdot x \rangle - \langle J_x \rangle \langle x \rangle\) m^2
cov_Jx__y \(\langle J_x \cdot y \rangle - \langle J_x \rangle \langle y \rangle\) m^2
cov_Jx__z \(\langle J_x \cdot z \rangle - \langle J_x \rangle \langle z \rangle\) m^2
cov_Jx__px \(\langle J_x \cdot p_x \rangle - \langle J_x \rangle \langle p_x \rangle\) m*eV/c
cov_Jx__py \(\langle J_x \cdot p_y \rangle - \langle J_x \rangle \langle p_y \rangle\) m*eV/c
cov_Jx__pz \(\langle J_x \cdot p_z \rangle - \langle J_x \rangle \langle p_z \rangle\) m*eV/c
cov_Jx__t \(\langle J_x \cdot t \rangle - \langle J_x \rangle \langle t \rangle\) m*s
cov_Jx__status \(\langle J_x \cdot \text{status} \rangle - \langle J_x \rangle \langle \text{status} \rangle\) m
cov_Jx__weight \(\langle J_x \cdot w \rangle - \langle J_x \rangle \langle w \rangle\) m*C
cov_Jx__id \(\langle J_x \cdot \text{id} \rangle - \langle J_x \rangle \langle \text{id} \rangle\) m
cov_Jx__z/c \(\langle J_x \cdot z/c \rangle - \langle J_x \rangle \langle z/c \rangle\) m*s
cov_Jx__p \(\langle J_x \cdot p \rangle - \langle J_x \rangle \langle p \rangle\) m*eV/c
cov_Jx__energy \(\langle J_x \cdot E \rangle - \langle J_x \rangle \langle E \rangle\) m*eV
cov_Jx__kinetic_energy \(\langle J_x \cdot E_\text{kinetic} \rangle - \langle J_x \rangle \langle E_\text{kinetic} \rangle\) m*eV
cov_Jx__xp \(\langle J_x \cdot x' \rangle - \langle J_x \rangle \langle x' \rangle\) m*rad
cov_Jx__yp \(\langle J_x \cdot y' \rangle - \langle J_x \rangle \langle y' \rangle\) m*rad
cov_Jx__higher_order_energy \(\langle J_x \cdot E_{(2)} \rangle - \langle J_x \rangle \langle E_{(2)} \rangle\) m*eV
cov_Jx__r \(\langle J_x \cdot r \rangle - \langle J_x \rangle \langle r \rangle\) m^2
cov_Jx__theta \(\langle J_x \cdot \theta \rangle - \langle J_x \rangle \langle \theta \rangle\) m*rad
cov_Jx__pr \(\langle J_x \cdot p_r \rangle - \langle J_x \rangle \langle p_r \rangle\) m*eV/c
cov_Jx__ptheta \(\langle J_x \cdot p_{\theta} \rangle - \langle J_x \rangle \langle p_{\theta} \rangle\) m*eV/c
cov_Jx__Lz \(\langle J_x \cdot L_z \rangle - \langle J_x \rangle \langle L_z \rangle\) m*m*eV/c
cov_Jx__gamma \(\langle J_x \cdot \gamma \rangle - \langle J_x \rangle \langle \gamma \rangle\) m
cov_Jx__beta \(\langle J_x \cdot \beta \rangle - \langle J_x \rangle \langle \beta \rangle\) m
cov_Jx__beta_x \(\langle J_x \cdot \beta_x \rangle - \langle J_x \rangle \langle \beta_x \rangle\) m
cov_Jx__beta_y \(\langle J_x \cdot \beta_y \rangle - \langle J_x \rangle \langle \beta_y \rangle\) m
cov_Jx__beta_z \(\langle J_x \cdot \beta_z \rangle - \langle J_x \rangle \langle \beta_z \rangle\) m
cov_Jx__x_bar \(\langle J_x \cdot \overline{x} \rangle - \langle J_x \rangle \langle \overline{x} \rangle\) m*sqrt(m)
cov_Jx__px_bar \(\langle J_x \cdot \overline{p_x} \rangle - \langle J_x \rangle \langle \overline{p_x} \rangle\) m*sqrt(m)
cov_Jx__Jx \(\langle J_x \cdot J_x \rangle - \langle J_x \rangle \langle J_x \rangle\) m^2
cov_Jx__Jy \(\langle J_x \cdot J_y \rangle - \langle J_x \rangle \langle J_y \rangle\) m^2
cov_Jy__x \(\langle J_y \cdot x \rangle - \langle J_y \rangle \langle x \rangle\) m^2
cov_Jy__y \(\langle J_y \cdot y \rangle - \langle J_y \rangle \langle y \rangle\) m^2
cov_Jy__z \(\langle J_y \cdot z \rangle - \langle J_y \rangle \langle z \rangle\) m^2
cov_Jy__px \(\langle J_y \cdot p_x \rangle - \langle J_y \rangle \langle p_x \rangle\) m*eV/c
cov_Jy__py \(\langle J_y \cdot p_y \rangle - \langle J_y \rangle \langle p_y \rangle\) m*eV/c
cov_Jy__pz \(\langle J_y \cdot p_z \rangle - \langle J_y \rangle \langle p_z \rangle\) m*eV/c
cov_Jy__t \(\langle J_y \cdot t \rangle - \langle J_y \rangle \langle t \rangle\) m*s
cov_Jy__status \(\langle J_y \cdot \text{status} \rangle - \langle J_y \rangle \langle \text{status} \rangle\) m
cov_Jy__weight \(\langle J_y \cdot w \rangle - \langle J_y \rangle \langle w \rangle\) m*C
cov_Jy__id \(\langle J_y \cdot \text{id} \rangle - \langle J_y \rangle \langle \text{id} \rangle\) m
cov_Jy__z/c \(\langle J_y \cdot z/c \rangle - \langle J_y \rangle \langle z/c \rangle\) m*s
cov_Jy__p \(\langle J_y \cdot p \rangle - \langle J_y \rangle \langle p \rangle\) m*eV/c
cov_Jy__energy \(\langle J_y \cdot E \rangle - \langle J_y \rangle \langle E \rangle\) m*eV
cov_Jy__kinetic_energy \(\langle J_y \cdot E_\text{kinetic} \rangle - \langle J_y \rangle \langle E_\text{kinetic} \rangle\) m*eV
cov_Jy__xp \(\langle J_y \cdot x' \rangle - \langle J_y \rangle \langle x' \rangle\) m*rad
cov_Jy__yp \(\langle J_y \cdot y' \rangle - \langle J_y \rangle \langle y' \rangle\) m*rad
cov_Jy__higher_order_energy \(\langle J_y \cdot E_{(2)} \rangle - \langle J_y \rangle \langle E_{(2)} \rangle\) m*eV
cov_Jy__r \(\langle J_y \cdot r \rangle - \langle J_y \rangle \langle r \rangle\) m^2
cov_Jy__theta \(\langle J_y \cdot \theta \rangle - \langle J_y \rangle \langle \theta \rangle\) m*rad
cov_Jy__pr \(\langle J_y \cdot p_r \rangle - \langle J_y \rangle \langle p_r \rangle\) m*eV/c
cov_Jy__ptheta \(\langle J_y \cdot p_{\theta} \rangle - \langle J_y \rangle \langle p_{\theta} \rangle\) m*eV/c
cov_Jy__Lz \(\langle J_y \cdot L_z \rangle - \langle J_y \rangle \langle L_z \rangle\) m*m*eV/c
cov_Jy__gamma \(\langle J_y \cdot \gamma \rangle - \langle J_y \rangle \langle \gamma \rangle\) m
cov_Jy__beta \(\langle J_y \cdot \beta \rangle - \langle J_y \rangle \langle \beta \rangle\) m
cov_Jy__beta_x \(\langle J_y \cdot \beta_x \rangle - \langle J_y \rangle \langle \beta_x \rangle\) m
cov_Jy__beta_y \(\langle J_y \cdot \beta_y \rangle - \langle J_y \rangle \langle \beta_y \rangle\) m
cov_Jy__beta_z \(\langle J_y \cdot \beta_z \rangle - \langle J_y \rangle \langle \beta_z \rangle\) m
cov_Jy__x_bar \(\langle J_y \cdot \overline{x} \rangle - \langle J_y \rangle \langle \overline{x} \rangle\) m*sqrt(m)
cov_Jy__px_bar \(\langle J_y \cdot \overline{p_x} \rangle - \langle J_y \rangle \langle \overline{p_x} \rangle\) m*sqrt(m)
cov_Jy__Jx \(\langle J_y \cdot J_x \rangle - \langle J_y \rangle \langle J_x \rangle\) m^2
cov_Jy__Jy \(\langle J_y \cdot J_y \rangle - \langle J_y \rangle \langle J_y \rangle\) m^2