抄録
We derive relativistic hydrodynamic equations with a dynamical spin degree of freedom on the basis of an entropy-current analysis. The first and second laws of local thermodynamics constrain possible structures of the constitutive relations including a spin current and the antisymmetric part of the (canonical) energy-momentum tensor. Solving the obtained hydrodynamic equations within the linear-mode analysis, we find spin-diffusion modes, indicating that spin density is damped out after a characteristic time scale controlled by transport coefficients introduced in the antisymmetric part of the energy-momentum tensor in the entropy-current analysis. This is a consequence of mutual convertibility between spin and orbital angular momentum.
| 本文言語 | English |
|---|---|
| ページ(範囲) | 100-106 |
| ページ数 | 7 |
| ジャーナル | Physics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics |
| 巻 | 795 |
| DOI | |
| 出版ステータス | Published - 2019 8月 10 |
| 外部発表 | はい |
ASJC Scopus subject areas
- 核物理学および高エネルギー物理学
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