Spin relaxation rate for baryons in thermal pion gas
Abstract
We study the relaxation dynamics of the spin polarization of baryons (nucleon and -baryon), in a thermal pion gas as a simple model of the hadronic phase of the QCD plasma produced in relativistic heavy-ion collisions. For this purpose, we formulate the quantum kinetic theory for the spin density matrix of baryons in the leading order of the gradient expansion. Considering the baryon-pion elastic scattering processes as the dominant interaction between baryons and thermal pions, we compute the spin relaxation rate of nucleons and -baryons in a pion gas up to temperature 200 MeV. In the case of nucleons, we evaluate the spin relaxation rate in the -channel resonance approximation, based on the known experimental data on -resonances. We also estimate the spin relaxation rate for -baryons, based on experimental inputs and theoretical models for the low-energy scattering, including the chiral perturbation theory.
Keywords
Cite
@article{arxiv.2312.08266,
title = {Spin relaxation rate for baryons in thermal pion gas},
author = {Yoshimasa Hidaka and Masaru Hongo and Mikhail Stephanov and Ho-Ung Yee},
journal= {arXiv preprint arXiv:2312.08266},
year = {2023}
}
Comments
16 pages, 8 figures