Thermodynamics of FLRW universe in Quadratic Gravity

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Main Authors: Ilkhchi, Navid Safarzadeh, Akbarieh, Amin Rezaei, Heydarzade, Yaghoub
Format: Preprint
Published: 2025
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author Ilkhchi, Navid Safarzadeh
Akbarieh, Amin Rezaei
Heydarzade, Yaghoub
author_facet Ilkhchi, Navid Safarzadeh
Akbarieh, Amin Rezaei
Heydarzade, Yaghoub
contents In this paper, we investigate the thermodynamic aspects of quadratic gravity in a $D$-dimensional Friedmann-Lemaitre-Robertson-Walker (FLRW) universe. First, we derive the field equations and the effective energy-momentum tensor for quadratic gravity. Then, using these equations, we obtain the generalized Misner-Sharp energy within the framework of this model. We consider the thermodynamic behavior of the apparent horizon and derive the equations of state related to the pressure, temperature, and radius of the apparent horizon. Using the thermodynamic pressure, we obtain the critical points corresponding to phase transitions. We determine the critical temperature and critical radius in terms of model parameters, including the quadratic coupling and the cosmological constant. We also examine key thermodynamic quantities, such as Wald entropy, specific heat at constant pressure, enthalpy, Gibbs free energy. By examining the behavior of these quantities, we can gain insight into the thermodynamic stability of the quadratic gravity model. In particular, we find that quadratic terms change the stability conditions and can lead to new thermodynamic behaviors compared to general relativity.
format Preprint
id arxiv_https___arxiv_org_abs_2507_12055
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Thermodynamics of FLRW universe in Quadratic Gravity
Ilkhchi, Navid Safarzadeh
Akbarieh, Amin Rezaei
Heydarzade, Yaghoub
General Relativity and Quantum Cosmology
In this paper, we investigate the thermodynamic aspects of quadratic gravity in a $D$-dimensional Friedmann-Lemaitre-Robertson-Walker (FLRW) universe. First, we derive the field equations and the effective energy-momentum tensor for quadratic gravity. Then, using these equations, we obtain the generalized Misner-Sharp energy within the framework of this model. We consider the thermodynamic behavior of the apparent horizon and derive the equations of state related to the pressure, temperature, and radius of the apparent horizon. Using the thermodynamic pressure, we obtain the critical points corresponding to phase transitions. We determine the critical temperature and critical radius in terms of model parameters, including the quadratic coupling and the cosmological constant. We also examine key thermodynamic quantities, such as Wald entropy, specific heat at constant pressure, enthalpy, Gibbs free energy. By examining the behavior of these quantities, we can gain insight into the thermodynamic stability of the quadratic gravity model. In particular, we find that quadratic terms change the stability conditions and can lead to new thermodynamic behaviors compared to general relativity.
title Thermodynamics of FLRW universe in Quadratic Gravity
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2507.12055