English

A generalized mass-to-horizon relation: a new global approach to entropic cosmologies and its connection to $\Lambda$CDM

General Relativity and Quantum Cosmology 2024-05-02 v2 Cosmology and Nongalactic Astrophysics

Abstract

In this letter, we propose a new generalized mass-to-horizon relation to be used in the context of entropic cosmologies and holographic principle scenarios. We show that a general scaling of the mass with the Universe horizon as M=γc2GLnM=\gamma \frac{c^2}{G}L^n leads to a new generalized entropy Sn=γn1+n2πkBc3GLn+1S_n = \gamma \frac{n}{1+n}\frac{2 \pi\,k_B\,c^3}{G\,\hbar} L^{n+1} from which we can recover many of the recently proposed forms of entropies at cosmological and black hole scales and also establish a thermodynamically consistent relation between each of them and Hawking temperature. We analyse the consequences of introducing this new mass-to-horizon relation on cosmological scales by comparing the corresponding modified Friedmann, acceleration, and continuity equations to cosmological data. We find that when n=3n=3, the entropic cosmology model is fully and totally equivalent to the standard Λ\LambdaCDM model, thus providing a new fundamental support for the origin and the nature of the cosmological constant. In general, if logγ<3\log \gamma < -3, and irrespective of the value of nn, we find a very good agreement with the data comparable with Λ\LambdaCDM from which, in Bayesian terms, our models are indistinguishable.

Keywords

Cite

@article{arxiv.2307.06239,
  title  = {A generalized mass-to-horizon relation: a new global approach to entropic cosmologies and its connection to $\Lambda$CDM},
  author = {Hussain Gohar and Vincenzo Salzano},
  journal= {arXiv preprint arXiv:2307.06239},
  year   = {2024}
}

Comments

9 pages, 1 table and added references and explanations