Spin relaxation rate for heavy quarks in weakly coupled QCD plasma

被引:0
作者
Masaru Hongo
Xu-Guang Huang
Matthias Kaminski
Mikhail Stephanov
Ho-Ung Yee
机构
[1] University of Illinois,Department of Physics
[2] RIKEN iTHEMS,Department of Physics
[3] RIKEN,Physics Department and Center for Field Theory and Particle Physics
[4] Niigata University,Key Laboratory of Nuclear Physics and Ion
[5] Fudan University,beam Application (MOE)
[6] Fudan University,Department of Physics and Astronomy
[7] University of Alabama,undefined
来源
Journal of High Energy Physics | / 2022卷
关键词
Quark-Gluon Plasma; Thermal Field Theory; Quantum Dissipative Systems;
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摘要
We compute the relaxation rate of the spin density of heavy quarks in a perturbative QCD plasma to leading-log order in the coupling constant g. The spin relaxation rate Γs in spin hydrodynamics is shown to be Γs ~ g4 log(1/g)T(T/M)2 in the heavy-quark limit T/M ≪ 1, which is smaller than the relaxation rate of other non- hydrodynamic modes by additional powers of T/M. We demonstrate three different methods to evaluate the spin relaxation rate: 1) the Green-Kubo formula in the spin hydrodynamic regime, 2) the spin density correlation function in the strict hydrodynamic limit, and 3) quantum kinetic theory of the spin distribution function in momentum space. We highlight the interesting differences between these methods, while they are ultimately connected to each other by the underlying Ward-Takahashi identity for the non-conserved spin density.
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