Clausius Equation for Horizons in $F(R)$ Gravity
Covariant Hamiltonian formulation of $F(R)$ gravity is used to find variation of surface Hamiltonian which leads to formulation of temperature and entropy of a horizon. These thermodynamic quantities are then used to establish an analogy between Einstein equation and Clausius equation. The obtained...
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creator | Matouš, Bohuslav |
description | Covariant Hamiltonian formulation of $F(R)$ gravity is used to find variation
of surface Hamiltonian which leads to formulation of temperature and entropy of
a horizon. These thermodynamic quantities are then used to establish an analogy
between Einstein equation and Clausius equation. The obtained results are
compared to those from classical General Relativity. |
doi_str_mv | 10.48550/arxiv.2111.14753 |
format | Article |
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of surface Hamiltonian which leads to formulation of temperature and entropy of
a horizon. These thermodynamic quantities are then used to establish an analogy
between Einstein equation and Clausius equation. The obtained results are
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of surface Hamiltonian which leads to formulation of temperature and entropy of
a horizon. These thermodynamic quantities are then used to establish an analogy
between Einstein equation and Clausius equation. The obtained results are
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of surface Hamiltonian which leads to formulation of temperature and entropy of
a horizon. These thermodynamic quantities are then used to establish an analogy
between Einstein equation and Clausius equation. The obtained results are
compared to those from classical General Relativity.</abstract><doi>10.48550/arxiv.2111.14753</doi><oa>free_for_read</oa></addata></record> |
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subjects | Physics - General Relativity and Quantum Cosmology |
title | Clausius Equation for Horizons in $F(R)$ Gravity |
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