Published May 16, 2024 | Version v1
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Spin relaxation rate for baryons in a thermal pion gas

  • 1. KEK
  • 2. RIKEN
  • 3. University of Chicago
  • 4. University of Illinois at Chicago

Description

We study the relaxation dynamics of the spin polarization of baryons (nucleon and Λ 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 Λ baryons in a pion gas up to temperature 200 MeV. In the case of nucleons, we evaluate the spin relaxation rate in the s-channel resonance approximation, based on the known experimental data on Δ resonances. We also estimate the spin relaxation rate for Λ baryons, based on experimental inputs and theoretical models for the low-energy Λπ scattering, including the chiral perturbation theory.

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PhysRevC.109.054909.pdf

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Additional details

Identifiers

DOI
10.1103/PhysRevC.109.054909
Other
oai:uchicago.tind.io:11831

Funding

U.S. Department of Energy
DEFG0201ER41195
Japan Society for the Promotion of Science
21H01084
Japan Society for the Promotion of Science
22K20369
Japan Society for the Promotion of Science
23H01174

UChicago Information

Division(s)
Physical Sciences Division
Department(s)
Kadanoff Center for Theoretical Physics