An improved formula for Wigner function and spin polarization in a decoupling relativistic fluid at local thermodynamic equilibrium

Fuente: arXiv
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Auteurs principaux: Sheng, Xin-Li, Becattini, Francesco, Roselli, Daniele
Format: Preprint
Publié: 2025
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author Sheng, Xin-Li
Becattini, Francesco
Roselli, Daniele
author_facet Sheng, Xin-Li
Becattini, Francesco
Roselli, Daniele
contents We present an upgraded formula for Wigner function and spin polarization of fermions emitted by a relativistic fluid at local thermodynamic equilibrium at the decoupling which improves the one obtained in refs. [1, 2] and used in numerical simulations of relativistic nuclear collisions. By using a new expansion method, applicable to decoupling hypersurfaces with arbitrary geometry, we reproduce the known term proportional to thermal vorticity and obtain an upgraded form of the spin-shear term which captures the dependence on the geometry. The new method also includes additional contributions whose physical nature is to be assessed. The new expression also naturally excludes contributions from space-time gradients in the normal direction of the hypersurface, providing a theoretical justification for the isothermal condition previously imposed a priori. This framework can be extended to particles with arbitrary spin.
format Preprint
id arxiv_https___arxiv_org_abs_2509_14301
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle An improved formula for Wigner function and spin polarization in a decoupling relativistic fluid at local thermodynamic equilibrium
Sheng, Xin-Li
Becattini, Francesco
Roselli, Daniele
Nuclear Theory
High Energy Physics - Phenomenology
High Energy Physics - Theory
We present an upgraded formula for Wigner function and spin polarization of fermions emitted by a relativistic fluid at local thermodynamic equilibrium at the decoupling which improves the one obtained in refs. [1, 2] and used in numerical simulations of relativistic nuclear collisions. By using a new expansion method, applicable to decoupling hypersurfaces with arbitrary geometry, we reproduce the known term proportional to thermal vorticity and obtain an upgraded form of the spin-shear term which captures the dependence on the geometry. The new method also includes additional contributions whose physical nature is to be assessed. The new expression also naturally excludes contributions from space-time gradients in the normal direction of the hypersurface, providing a theoretical justification for the isothermal condition previously imposed a priori. This framework can be extended to particles with arbitrary spin.
title An improved formula for Wigner function and spin polarization in a decoupling relativistic fluid at local thermodynamic equilibrium
topic Nuclear Theory
High Energy Physics - Phenomenology
High Energy Physics - Theory
url https://arxiv.org/abs/2509.14301