Holographic equation of state matched with hadron gas equation as a tool for the study of the quark-gluon plasma evolution

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Hauptverfasser: Anufriev, A. V., Kovalenko, V. N.
Format: Preprint
Veröffentlicht: 2025
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author Anufriev, A. V.
Kovalenko, V. N.
author_facet Anufriev, A. V.
Kovalenko, V. N.
contents In this paper, we discuss the matching of the holographic equation of state with the equation of Hadron Resonance Gas for studying the nuclear matter properties within the framework of relativistic heavy-ion collisions. Machine learning methods are applied to the calibration of model's free parameters using the lattice QCD results for the physical values of quark masses. One of the most advanced procedures for matching is used with the function that approximate behavior of both models on particular limit adopted from NEOS equation. Final hadronic spectra are obtained within multi-staged numerical approach of the iEBE-MUSIC and SMASH-vHLLE packages. The code of relativistic hydrodynamics is modified by implementing a tabulated holographic equation of state, enabling simulations of quark-gluon plasma evolution with dynamically generated initial conditions via the 3D Monte Carlo Glauber Model and SMASH. Hybrid iSS+UrQMD and Hadron Sampler+SMASH approaches are utilized at the freeze-out stage.
format Preprint
id arxiv_https___arxiv_org_abs_2510_27541
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Holographic equation of state matched with hadron gas equation as a tool for the study of the quark-gluon plasma evolution
Anufriev, A. V.
Kovalenko, V. N.
Nuclear Theory
General Relativity and Quantum Cosmology
High Energy Physics - Phenomenology
High Energy Physics - Theory
In this paper, we discuss the matching of the holographic equation of state with the equation of Hadron Resonance Gas for studying the nuclear matter properties within the framework of relativistic heavy-ion collisions. Machine learning methods are applied to the calibration of model's free parameters using the lattice QCD results for the physical values of quark masses. One of the most advanced procedures for matching is used with the function that approximate behavior of both models on particular limit adopted from NEOS equation. Final hadronic spectra are obtained within multi-staged numerical approach of the iEBE-MUSIC and SMASH-vHLLE packages. The code of relativistic hydrodynamics is modified by implementing a tabulated holographic equation of state, enabling simulations of quark-gluon plasma evolution with dynamically generated initial conditions via the 3D Monte Carlo Glauber Model and SMASH. Hybrid iSS+UrQMD and Hadron Sampler+SMASH approaches are utilized at the freeze-out stage.
title Holographic equation of state matched with hadron gas equation as a tool for the study of the quark-gluon plasma evolution
topic Nuclear Theory
General Relativity and Quantum Cosmology
High Energy Physics - Phenomenology
High Energy Physics - Theory
url https://arxiv.org/abs/2510.27541