The effect of causality constraints on Bayesian analyses of heavy-ion collisions

Fuente: arXiv
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Autori principali: Domingues, Thiago S., Krupczak, Renata, Noronha, Jorge, da Silva, Tiago Nunes, Paquet, Jean-François, Luzum, Matthew
Natura: Preprint
Pubblicazione: 2024
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author Domingues, Thiago S.
Krupczak, Renata
Noronha, Jorge
da Silva, Tiago Nunes
Paquet, Jean-François
Luzum, Matthew
author_facet Domingues, Thiago S.
Krupczak, Renata
Noronha, Jorge
da Silva, Tiago Nunes
Paquet, Jean-François
Luzum, Matthew
contents There have long been questions about the limits to the validity of relativistic fluid dynamics, and whether it is being used outside its regime of validity in modern simulations of relativistic heavy-ion collisions. An important new tool for answering this question is a causality analysis in the nonlinear regime -- if the solutions of the evolution equations do not respect relativistic causality, they are not a faithful representation of the underlying relativistic theory (in this case, quantum chromodynamics). Using this non-linear criterion, it has recently been shown that hydrodynamics is indeed being used outside its regime of validity in simulations, at least sometimes. Here we explore the phenomenological implications, particularly the quantitative effects of demanding limits on acausality in modern Bayesian parameter estimation. We find that, while typically only a small fraction of the system's energy is initially in an acausal regime, placing strict limits on the allowed energy fraction significantly changes the preferred properties of the initial condition, which in turn alters the extracted medium properties such as bulk viscosity, where large values are no longer favored. These findings highlight the importance of developing better theoretical descriptions of the early-time, out-of-equilibrium dynamics of relativistic heavy-ion collisions.
format Preprint
id arxiv_https___arxiv_org_abs_2409_17127
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The effect of causality constraints on Bayesian analyses of heavy-ion collisions
Domingues, Thiago S.
Krupczak, Renata
Noronha, Jorge
da Silva, Tiago Nunes
Paquet, Jean-François
Luzum, Matthew
Nuclear Theory
High Energy Physics - Phenomenology
There have long been questions about the limits to the validity of relativistic fluid dynamics, and whether it is being used outside its regime of validity in modern simulations of relativistic heavy-ion collisions. An important new tool for answering this question is a causality analysis in the nonlinear regime -- if the solutions of the evolution equations do not respect relativistic causality, they are not a faithful representation of the underlying relativistic theory (in this case, quantum chromodynamics). Using this non-linear criterion, it has recently been shown that hydrodynamics is indeed being used outside its regime of validity in simulations, at least sometimes. Here we explore the phenomenological implications, particularly the quantitative effects of demanding limits on acausality in modern Bayesian parameter estimation. We find that, while typically only a small fraction of the system's energy is initially in an acausal regime, placing strict limits on the allowed energy fraction significantly changes the preferred properties of the initial condition, which in turn alters the extracted medium properties such as bulk viscosity, where large values are no longer favored. These findings highlight the importance of developing better theoretical descriptions of the early-time, out-of-equilibrium dynamics of relativistic heavy-ion collisions.
title The effect of causality constraints on Bayesian analyses of heavy-ion collisions
topic Nuclear Theory
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2409.17127