Relativistic Hydrodynamics under Rotation: Prospects & Limitations from a Holographic Perspective

Fuente: arXiv
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Main Authors: Amano, Markus A. G., Cartwright, Casey, Kaminski, Matthias, Wu, Jackson
Format: Preprint
Published: 2023
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author Amano, Markus A. G.
Cartwright, Casey
Kaminski, Matthias
Wu, Jackson
author_facet Amano, Markus A. G.
Cartwright, Casey
Kaminski, Matthias
Wu, Jackson
contents The AdS/CFT correspondence, or holography, has provided numerous important insights into the behavior of strongly-coupled many-body systems. Crucially, it has provided a testing ground for the construction of new effective field theories, especially those in the low frequency, long wavelength limit known as hydrodynamics. We review the study of strongly-coupled rotating fluids using holography, and we examine the hydrodynamics emerging from the study of rotating Myers-Perry black holes. We discuss three regimes in which holographic rotating fluids display either (1) hydrodynamic behavior of a boosted fluid, (2) hydrodynamic behavior distinct from a boosted fluid, or (3) no obvious hydrodynamic behavior. We describe techniques to obtain hydrodynamic and non-hydrodynamic modes, and we compute the radius of convergence for the hydrodynamic regimes. The limitations of hydrodynamics under rotation are discussed alongside our findings.
format Preprint
id arxiv_https___arxiv_org_abs_2308_11686
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Relativistic Hydrodynamics under Rotation: Prospects & Limitations from a Holographic Perspective
Amano, Markus A. G.
Cartwright, Casey
Kaminski, Matthias
Wu, Jackson
High Energy Physics - Theory
General Relativity and Quantum Cosmology
High Energy Physics - Phenomenology
Nuclear Experiment
Nuclear Theory
The AdS/CFT correspondence, or holography, has provided numerous important insights into the behavior of strongly-coupled many-body systems. Crucially, it has provided a testing ground for the construction of new effective field theories, especially those in the low frequency, long wavelength limit known as hydrodynamics. We review the study of strongly-coupled rotating fluids using holography, and we examine the hydrodynamics emerging from the study of rotating Myers-Perry black holes. We discuss three regimes in which holographic rotating fluids display either (1) hydrodynamic behavior of a boosted fluid, (2) hydrodynamic behavior distinct from a boosted fluid, or (3) no obvious hydrodynamic behavior. We describe techniques to obtain hydrodynamic and non-hydrodynamic modes, and we compute the radius of convergence for the hydrodynamic regimes. The limitations of hydrodynamics under rotation are discussed alongside our findings.
title Relativistic Hydrodynamics under Rotation: Prospects & Limitations from a Holographic Perspective
topic High Energy Physics - Theory
General Relativity and Quantum Cosmology
High Energy Physics - Phenomenology
Nuclear Experiment
Nuclear Theory
url https://arxiv.org/abs/2308.11686