Spinodal decomposition in Bjorken flow

Fuente: arXiv
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Autores principales: Kapusta, Joseph, Singh, Mayank, Welle, Thomas
Formato: Preprint
Publicado: 2024
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author Kapusta, Joseph
Singh, Mayank
Welle, Thomas
author_facet Kapusta, Joseph
Singh, Mayank
Welle, Thomas
contents The QCD first-order phase transition at large baryon densities is expected to proceed by spinodal decomposition. This spinodal phase is likely to leave its signatures on the experimental observables measured in heavy-ion collision experiments. Identifying these signatures requires phenomenological models integrating surface effects resulting from the phase transition into the hydrodynamical description of the expanding quark gluon plasma. We write the equations of relativistic hydrodynamics with spinodal decomposition and solve it in on a background of Bjorken flow relevant for heavy-ion collisions.
format Preprint
id arxiv_https___arxiv_org_abs_2409_16525
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Spinodal decomposition in Bjorken flow
Kapusta, Joseph
Singh, Mayank
Welle, Thomas
High Energy Physics - Phenomenology
Nuclear Theory
The QCD first-order phase transition at large baryon densities is expected to proceed by spinodal decomposition. This spinodal phase is likely to leave its signatures on the experimental observables measured in heavy-ion collision experiments. Identifying these signatures requires phenomenological models integrating surface effects resulting from the phase transition into the hydrodynamical description of the expanding quark gluon plasma. We write the equations of relativistic hydrodynamics with spinodal decomposition and solve it in on a background of Bjorken flow relevant for heavy-ion collisions.
title Spinodal decomposition in Bjorken flow
topic High Energy Physics - Phenomenology
Nuclear Theory
url https://arxiv.org/abs/2409.16525