Holographic dark energy from the laws of thermodynamics with Rényi entropy
arXiv:2208.08736 · doi:10.1140/epjc/s10052-023-11202-w
Abstract
This article investigates the relationship between the holographic principle and the laws of thermodynamics in explaining the late-time acceleration of the universe. First, we explore the possibilities of generating the standard holographic dark energy (SHDE) from the laws of horizon thermodynamics. Except for entropies that follow an exponent stretched area law, unless we redefine the horizon temperature, we found it challenging to construct a one-to-one correspondence between the dark energies defined by the holographic principle and the laws of thermodynamics. Secondly, in SHDE models, unless we invoke some phenomenological interactions, it is impossible to explain the late-time cosmic acceleration with the Hubble horizon as the IR cutoff. On the other hand, it is possible to induce dark energy as an integration constant using the laws of thermodynamics on the Hubble horizon. These motivated us to explore a feasible way to invoke the holographic principle from the laws of horizon thermodynamics. We show that the additional terms that appear in the modified Friedmann equations on using entropies other than the Bekenstein-Hawking entropy in the first law of thermodynamics can behave like a dynamic holographic dark energy (HDE). We study the features of such an HDE with Rényi entropy as the choice without considering any non-standard interactions. Interestingly, the resulting form of dark energy reduces to the standard cosmological constant when Rényi entropy reduces to the Bekenstein-Hawking entropy. By examining different parameters, we affirm the validity of our approach to dark energy, which respects both holographic principle and thermodynamics.
21 pages, 13 figures (including sub-figures). Published in The European Physical Journal C
References in corpus (25)
- Dynamics of dark energy
- Can dark energy evolve to the Phantom?
- Thermodynamic Behavior of Friedmann Equation at Apparent Horizon of FRW Universe
- Infrared cut-off proposal for the Holographic density
- Extended Gravity Cosmography
- Hubble Sinks In The Low-Redshift Swampland
- Modified cosmology from extended entropy with varying exponent
- Early and late universe holographic cosmology from a new generalized entropy
- Barrow entropic dark energy: A member of generalized holographic dark energy family
- Unifying Holographic Inflation with Holographic Dark Energy: a Covariant Approach
- Holographic Pseudo Entropy
- Is Local At Odds With Dark Energy EFT?
- The Growth of Structure in Interacting Dark Energy Models
- Barrow Entropy Corrections to Friedmann Equations
- Dynamical dark energy after Planck CMB final release and tension
- Area-law versus Rényi and Tsallis black hole entropies
- Can dark energy be dynamical?
- Building a realistic neutron star from holography
- Cosmological Constant Problems and Renormalization Group
- Surfaces away from horizons are not thermodynamic
- Tsallis Holographic Dark Energy Reconsidered
- A note on interacting holographic dark energy with a Hubble-scale cutoff
- Barrow Holographic Dark Energy Model with GO Cut-off -- An Alternative Perspective
- A thermodynamic origin for the Cohen-Kaplan-Nelson bound
- The d-Dimensional Cosmological Constant and the Holographic Horizons
Cited by in corpus (14)
- Holographic and Gravity-Thermodynamic Approaches in Entropic Cosmology: Bayesian Assessment using late-time Data
- Rényi Holographic Dark Energy
- Traversable Wormholes supported by Holographic Dark Energy with a modified Equation of State
- On the thermodynamics of reconciling quantum and gravity
- Cosmological model based on both holographic-like connection and Padmanabhan's holographic equipartition law
- Interacting and Non-interacting Reńyi Holographic Dark Energy Models in DGP Braneworld
- Constraints on Generalized Gravity-Thermodynamic Cosmology from DESI DR2
- Reconciling fractional entropy and black hole entropy compositions
- Holographic thermodynamic relation for dissipative and non-dissipative universes in a flat FLRW cosmology
- Cosmological Tensions with Non-Extensive Entropic Cosmology: A Modified Stress-Energy Approach
- Entropy Bounds and Holographic Dark Energy: Conflicts and Consensus
- Cosmological scenario based on the first and second laws of thermodynamics: Thermodynamic constraints on a generalized cosmological model
- Impact of the Infrared Cutoff on Structure Formation in Tsallis Holographic Dark Energy
- Phase space analysis of Rényi Holographic dark energy model