We present a new variant of the spinor techniques for calculating the amplitudes of processes involving massive fermions with arbitrary polarization. It is relatively simple and leads to basic spinor products. Our procedure is not more complex than CALCUL spinor techniques for massless fermions. We obtain spinor Chisholm identities for massive fermions. As an illustration, expressions are given for the amplitudes of electron-positron annihilation into fermions-pairs for several polarizations
We explain how one-loop amplitudes with massive fermions can be computed using only on-shell informa...
AbstractWe extend the generalized D-dimensional unitarity method for numerical evaluation of one-loo...
A simple algorithm is presented to decompose any 1-loop amplitude for scattering processes of the cl...
Abstract We present a new variant of spinor techniques for calculating the amplitudes of processes i...
We present a method for symbolic evaluation of Feynman amplitudes. We construct special polarization...
The Weyl-van-der-Waerden spinor technique for calculating helicity amplitudes of massive and massles...
The bilinear combination of Dirac spinors $u(p_1,n_1)\bar u(p_2,n_2)$ is expressed in terms of Loren...
We present a method for symbolic calculation of Feynman amplitudes for processes involving both mass...
General scheme for covariant calculation of the amplitudes of processes with the polarized Dirac par...
[[abstract]]We present an application of the Weyl-van der Waerden spinor calculus to the computation...
In the first part of this series, we employed the second-order formalism and the “symbol” map to con...
In the first part of this series, we employed the second-order formalism and the “symbol” map to con...
In the first part of this series, we employed the second-order formalism and the “symbol” map to con...
In the first part of this series, we employed the second-order formalism and the “symbol” map to con...
In this article, we extend the spinor technique for calculating helicity amplitudes to general massi...
We explain how one-loop amplitudes with massive fermions can be computed using only on-shell informa...
AbstractWe extend the generalized D-dimensional unitarity method for numerical evaluation of one-loo...
A simple algorithm is presented to decompose any 1-loop amplitude for scattering processes of the cl...
Abstract We present a new variant of spinor techniques for calculating the amplitudes of processes i...
We present a method for symbolic evaluation of Feynman amplitudes. We construct special polarization...
The Weyl-van-der-Waerden spinor technique for calculating helicity amplitudes of massive and massles...
The bilinear combination of Dirac spinors $u(p_1,n_1)\bar u(p_2,n_2)$ is expressed in terms of Loren...
We present a method for symbolic calculation of Feynman amplitudes for processes involving both mass...
General scheme for covariant calculation of the amplitudes of processes with the polarized Dirac par...
[[abstract]]We present an application of the Weyl-van der Waerden spinor calculus to the computation...
In the first part of this series, we employed the second-order formalism and the “symbol” map to con...
In the first part of this series, we employed the second-order formalism and the “symbol” map to con...
In the first part of this series, we employed the second-order formalism and the “symbol” map to con...
In the first part of this series, we employed the second-order formalism and the “symbol” map to con...
In this article, we extend the spinor technique for calculating helicity amplitudes to general massi...
We explain how one-loop amplitudes with massive fermions can be computed using only on-shell informa...
AbstractWe extend the generalized D-dimensional unitarity method for numerical evaluation of one-loo...
A simple algorithm is presented to decompose any 1-loop amplitude for scattering processes of the cl...