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Main Authors: Bradley, Owen, Plumberg, Christopher
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2402.03568
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author Bradley, Owen
Plumberg, Christopher
author_facet Bradley, Owen
Plumberg, Christopher
contents Exact solutions to the equations of hydrodynamics provide valuable benchmark tests for numerical hydrodynamic codes and also provide useful insights into the nature of hydrodynamic flow. In this paper, we introduce two novel, closely related exact solutions with non-trivial rapidity dependence which are generalizations of the well-known Gubser flow solution to conformal hydrodynamics. We then use one of our solutions to explore the consequences of choosing between two different criteria for implementing the freeze out process in fluid dynamical simulations of nuclear collisions: freeze out at constant temperature vs. freeze out at constant Knudsen number. We find that, employing our exact solution, the differences between these freeze out criteria are heavily influenced by the presence of strong collective flow. Our results highlight the importance of accurately describing the freeze out process in collisions with large flow gradients, particularly in small systems.
format Preprint
id arxiv_https___arxiv_org_abs_2402_03568
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Exploring freeze out and flow using exact solutions of conformal hydrodynamics
Bradley, Owen
Plumberg, Christopher
Nuclear Theory
High Energy Physics - Theory
Nuclear Experiment
Exact solutions to the equations of hydrodynamics provide valuable benchmark tests for numerical hydrodynamic codes and also provide useful insights into the nature of hydrodynamic flow. In this paper, we introduce two novel, closely related exact solutions with non-trivial rapidity dependence which are generalizations of the well-known Gubser flow solution to conformal hydrodynamics. We then use one of our solutions to explore the consequences of choosing between two different criteria for implementing the freeze out process in fluid dynamical simulations of nuclear collisions: freeze out at constant temperature vs. freeze out at constant Knudsen number. We find that, employing our exact solution, the differences between these freeze out criteria are heavily influenced by the presence of strong collective flow. Our results highlight the importance of accurately describing the freeze out process in collisions with large flow gradients, particularly in small systems.
title Exploring freeze out and flow using exact solutions of conformal hydrodynamics
topic Nuclear Theory
High Energy Physics - Theory
Nuclear Experiment
url https://arxiv.org/abs/2402.03568