Towards a bottom-up formulation of spin kinetic theory
Abstract
We develop a bottom-up formulation of spin-kinetic theory for hot and/or dense plasmas. We introduce scalar and axial-vector phase-space functions as dynamical variables that parametrize both spin-averaged and spin-dependent distribution functions. Using spin-dependent Poisson brackets, we derive the corresponding kinetic equations and construct the associated Schwinger-Keldysh action. We further demonstrate how physical observables can be expressed in terms of these dynamical variables through constitutive relations. In the linear response regime, we establish a precise matching between the kinetic-theory and field-theory descriptions of vector and axial Wigner functions under electromagnetic and gravitational perturbations. Our framework provides a complementary approach to describing the dynamics of spin effects in a medium.
Keywords
Cite
@article{arxiv.2512.23960,
title = {Towards a bottom-up formulation of spin kinetic theory},
author = {Zonglin Mo and Yi Yin},
journal= {arXiv preprint arXiv:2512.23960},
year = {2026}
}
Comments
27 pages, comments are welcome (v2, minor typos correcrted, references updated)