Heat and work in black hole thermodynamics via holography

Fuente: arXiv
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Main Authors: Shigemura, Tomohiro, Shimizu, Keito, Sugishita, Sotaro, Takeda, Daichi, Yoda, Takuya
Format: Preprint
Published: 2024
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author Shigemura, Tomohiro
Shimizu, Keito
Sugishita, Sotaro
Takeda, Daichi
Yoda, Takuya
author_facet Shigemura, Tomohiro
Shimizu, Keito
Sugishita, Sotaro
Takeda, Daichi
Yoda, Takuya
contents We propose a formulation of black hole thermodynamics that incorporates the notions of heat and work, based on the thermodynamics in quantum theory and the AdS/CFT correspondence. First, for coupled holographic CFTs, we define a coarse-graining procedure adopting the principle of maximum entropy. Employing this approach, when the system is divided into a target system and thermal baths, we formulate the first and second laws, as well as the fundamental thermodynamic relation. Then, by translating the resulting thermodynamics into the AdS gravity language, we construct a thermodynamic framework for composite black hole systems that encompasses both heat and work. This formulation relies on holography, but not on energy conditions on the gravity side. We also argue that the second law serves as a necessary criterion for the UV completeness of gravitational theories.
format Preprint
id arxiv_https___arxiv_org_abs_2412_15697
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Heat and work in black hole thermodynamics via holography
Shigemura, Tomohiro
Shimizu, Keito
Sugishita, Sotaro
Takeda, Daichi
Yoda, Takuya
High Energy Physics - Theory
Statistical Mechanics
General Relativity and Quantum Cosmology
We propose a formulation of black hole thermodynamics that incorporates the notions of heat and work, based on the thermodynamics in quantum theory and the AdS/CFT correspondence. First, for coupled holographic CFTs, we define a coarse-graining procedure adopting the principle of maximum entropy. Employing this approach, when the system is divided into a target system and thermal baths, we formulate the first and second laws, as well as the fundamental thermodynamic relation. Then, by translating the resulting thermodynamics into the AdS gravity language, we construct a thermodynamic framework for composite black hole systems that encompasses both heat and work. This formulation relies on holography, but not on energy conditions on the gravity side. We also argue that the second law serves as a necessary criterion for the UV completeness of gravitational theories.
title Heat and work in black hole thermodynamics via holography
topic High Energy Physics - Theory
Statistical Mechanics
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2412.15697