Hubble's Law in Heavy Ion Collisions

Fuente: arXiv
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Hauptverfasser: Kolomoyets, N. V., Teryaev, O. V., Voronyuk, V.
Format: Preprint
Veröffentlicht: 2025
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author Kolomoyets, N. V.
Teryaev, O. V.
Voronyuk, V.
author_facet Kolomoyets, N. V.
Teryaev, O. V.
Voronyuk, V.
contents The evolution of the "microscopic" Hubble parameter related to the expansion of matter born in heavy-ion collisions was obtained for nucleons and pions. The calculations were carried out within the parton-hadron-string dynamics (PHSD) transport model. Au+Au collisions with $\sqrt{s_{NN}} = 7.8$ GeV at $b = 2.5,\ 5.0,\ 7.5$, and $10.0$ fm were considered. A new method for determining the "microscopic" Hubble parameter from simulated data was used. The ballistic motion was obtained for the longitudinal direction after the separation of the nuclei. In earlier times, the evolution of the "microscopic" Hubble parameter in this direction was more complicated. For transverse directions, an exponential low-time asymptotics of the Hubble parameter was observed. The obtained values of the "microscopic" Hubble parameter are about 40 orders of magnitude higher than the cosmological Hubble constant.
format Preprint
id arxiv_https___arxiv_org_abs_2508_16715
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Hubble's Law in Heavy Ion Collisions
Kolomoyets, N. V.
Teryaev, O. V.
Voronyuk, V.
Nuclear Theory
High Energy Physics - Phenomenology
The evolution of the "microscopic" Hubble parameter related to the expansion of matter born in heavy-ion collisions was obtained for nucleons and pions. The calculations were carried out within the parton-hadron-string dynamics (PHSD) transport model. Au+Au collisions with $\sqrt{s_{NN}} = 7.8$ GeV at $b = 2.5,\ 5.0,\ 7.5$, and $10.0$ fm were considered. A new method for determining the "microscopic" Hubble parameter from simulated data was used. The ballistic motion was obtained for the longitudinal direction after the separation of the nuclei. In earlier times, the evolution of the "microscopic" Hubble parameter in this direction was more complicated. For transverse directions, an exponential low-time asymptotics of the Hubble parameter was observed. The obtained values of the "microscopic" Hubble parameter are about 40 orders of magnitude higher than the cosmological Hubble constant.
title Hubble's Law in Heavy Ion Collisions
topic Nuclear Theory
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2508.16715