Kinetic theory with spin: From massive to massless fermions
Abstract
We find that the recently developed kinetic theories with spin for massive and massless fermions are smoothly connected. By introducing a reference-frame vector, we decompose the dipole-moment tensor into electric and magnetic dipole moments. We show that the axial-vector component of the Wigner function contains a contribution from the transverse magnetic dipole moment which accounts for the transverse spin degree of freedom (DOF) and vanishes smoothly in the massless limit. As a result, the kinetic equations, describing four DOF for massive fermions, becomes smoothly the chiral kinetic equations describing two DOF in the massless limit. We also confirm the small-mass behavior of the Wigner function by explicit calculation using a Gaussian wave packet.
Keywords
Cite
@article{arxiv.2005.00204,
title = {Kinetic theory with spin: From massive to massless fermions},
author = {Xin-Li Sheng and Qun Wang and Xu-Guang Huang},
journal= {arXiv preprint arXiv:2005.00204},
year = {2020}
}
Comments
12 pages, no figure