Bases
Bases above the EW scale
Derivative basis
- Name: derivative_above
- Lagrangian:
- Parameters:- cB: Coupling to $B$ bosons $c_B$,- float.
- cW: Coupling to $W$ bosons $c_W$,- float.
- cg: Coupling to gluons $c_g$,- float.
- cqL: Coupling to left-handed quarks $c_{q_L}$, $3\times 3$- numpy.matrix.
- cuR: Coupling to right-handed up-type quarks $c_{u_R}$, $3\times 3$- numpy.matrix.
- cdR: Coupling to right-handed down-type quarks $c_{d_R}$, $3\times 3$- numpy.matrix.
- clL: Coupling to left-handed leptons $c_{\ell_L}$, $3\times 3$- numpy.matrix.
- ceR: Coupling to right-handed charged leptons $c_{e_R}$, $3\times 3$- numpy.matrix.
 
- Notes:- Fermions are weak eigensates.
 
- References:
Mass basis
- Name: massbasis_above
- Lagrangian:
- Parameters:- cgamma: Coupling to photons $c_\gamma$,- float.
- cgammaZ: Coupling to photon and $Z$ boson $c_{\gamma Z}$,- float.
- cZ: Coupling to $Z$ bosons $c_Z$,- float.
- cW: Coupling to $W$ bosons $c_W$,- float.
- cg: Coupling to gluons $c_g$,- float.
- kU: Coupling to left-handed up-type quarks $k_U$, $3\times 3$- numpy.matrix.
- ku: Coupling to right-handed up-type quarks $k_u$, $3\times 3$- numpy.matrix.
- kD: Coupling to left-handed down-type quarks $k_D$, $3\times 3$- numpy.matrix.
- kd: Coupling to right-handed down-type quarks $k_d$, $3\times 3$- numpy.matrix.
- kE: Coupling to left-handed charged leptons $k_E$, $3\times 3$- numpy.matrix.
- ke: Coupling to right-handed charged leptons $k_e$, $3\times 3$- numpy.matrix.
- kNu: Coupling to left-handed neutrinos $k_\nu$, $3\times 3$- numpy.matrix.
 
- Notes:- Fermions are mass eigensates.
 
- References:
Bases below the EW scale
$k_F$ basis
- Name: kF_below
- Lagrangian:
- Parameters:- cgamma: Coupling to photons $c_\gamma$,- float.
- cg: Coupling to gluons $c_g$,- float.
- kU: Coupling to left-handed up-type quarks $k_U$, $2\times 2$- numpy.matrix.
- ku: Coupling to right-handed up-type quarks $k_u$, $2\times 2$- numpy.matrix.
- kD: Coupling to left-handed down-type quarks $k_D$, $3\times 3$- numpy.matrix.
- kd: Coupling to right-handed down-type quarks $k_d$, $3\times 3$- numpy.matrix.
- kE: Coupling to left-handed charged leptons $k_E$, $3\times 3$- numpy.matrix.
- ke: Coupling to right-handed charged leptons $k_e$, $3\times 3$- numpy.matrix.
- kNu: Coupling to left-handed neutrinos $k_\nu$, $3\times 3$- numpy.matrix.
 
- References:
Vector-axial basis
- Name: VA_below
- Lagrangian:
- Parameters:- cgamma: Coupling to photons $c_\gamma$,- float.
- cg: Coupling to gluons $c_g$,- float.
- cuV: Vectorial coupling to up-type quarks $c_u^V$, $2\times 2$- numpy.matrix.
- cuA: Axial coupling to up-type quarks $c_u^A$, $2\times 2$- numpy.matrix.
- cdV: Vectorial coupling to down-type quarks $c_d^V$, $3\times 3$- numpy.matrix.
- cdA: Axial coupling to down-type quarks $c_d^A$, $3\times 3$- numpy.matrix.
- ceV: Vectorial coupling to charged leptons $c_e^V$, $3\times 3$- numpy.matrix.
- ceA: Axial coupling to charged leptons $c_e^A$, $3\times 3$- numpy.matrix.
- cnu: Coupling to left-handed neutrinos $c_\nu$, $3\times 3$- numpy.matrix.
 
 This post is licensed under  CC BY 4.0  by the author.