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Glavni autori: Rojas, Jesús Cruz, Gorda, Tyler, Hoyos, Carlos, Jokela, Niko, Järvinen, Matti, Kurkela, Aleksi, Paatelainen, Risto, Säppi, Saga, Vuorinen, Aleksi
Format: Preprint
Izdano: 2024
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Online pristup:https://arxiv.org/abs/2402.00621
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author Rojas, Jesús Cruz
Gorda, Tyler
Hoyos, Carlos
Jokela, Niko
Järvinen, Matti
Kurkela, Aleksi
Paatelainen, Risto
Säppi, Saga
Vuorinen, Aleksi
author_facet Rojas, Jesús Cruz
Gorda, Tyler
Hoyos, Carlos
Jokela, Niko
Järvinen, Matti
Kurkela, Aleksi
Paatelainen, Risto
Säppi, Saga
Vuorinen, Aleksi
contents Modern hydrodynamic simulations of core-collapse supernovae and neutron-star mergers require knowledge not only of the equilibrium properties of strongly interacting matter, but also of the system's response to perturbations, encoded in various transport coefficients. Using perturbative and holographic tools, we derive here an improved weak-coupling and a new strong-coupling result for the most important transport coefficient of unpaired quark matter, its bulk viscosity. These results are combined in a simple analytic pocket formula for the quantity that is rooted in perturbative Quantum Chromodynamics at high densities but takes into account nonperturbative holographic input at neutron-star densities, where the system is strongly coupled. This expression can be used in the modeling of unpaired quark matter at astrophysically relevant temperatures and densities.
format Preprint
id arxiv_https___arxiv_org_abs_2402_00621
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Estimate for the bulk viscosity of strongly coupled quark matter using perturbative QCD and holography
Rojas, Jesús Cruz
Gorda, Tyler
Hoyos, Carlos
Jokela, Niko
Järvinen, Matti
Kurkela, Aleksi
Paatelainen, Risto
Säppi, Saga
Vuorinen, Aleksi
High Energy Physics - Phenomenology
High Energy Astrophysical Phenomena
High Energy Physics - Theory
Nuclear Theory
Modern hydrodynamic simulations of core-collapse supernovae and neutron-star mergers require knowledge not only of the equilibrium properties of strongly interacting matter, but also of the system's response to perturbations, encoded in various transport coefficients. Using perturbative and holographic tools, we derive here an improved weak-coupling and a new strong-coupling result for the most important transport coefficient of unpaired quark matter, its bulk viscosity. These results are combined in a simple analytic pocket formula for the quantity that is rooted in perturbative Quantum Chromodynamics at high densities but takes into account nonperturbative holographic input at neutron-star densities, where the system is strongly coupled. This expression can be used in the modeling of unpaired quark matter at astrophysically relevant temperatures and densities.
title Estimate for the bulk viscosity of strongly coupled quark matter using perturbative QCD and holography
topic High Energy Physics - Phenomenology
High Energy Astrophysical Phenomena
High Energy Physics - Theory
Nuclear Theory
url https://arxiv.org/abs/2402.00621