English

Gravitational Baryogenesis Constraints on Nojiri-Odintsov $f(R)$ Gravity

General Relativity and Quantum Cosmology 2025-06-25 v1

Abstract

This paper focuses on exploring the imbalance between matter and antimatter via the gravitational baryogenesis mechanism within the framework of Nojiri-Odintsov f(R)f(R) gravity models in a spatially flat FLRW universe, where RR is the Ricci curvature scalar. This mechanism is based on CP\mathcal{CP}-violation generated via introducing an interaction between baryonic matter current (JμJ^\mu) and the derivative of curvature scalar (μR\partial_\mu R), which finally results in the baryon asymmetry. We examine three distinct f(R)f(R) models: (i) f(R)=αRm+R2k2+βR2f(R)=\frac{-\alpha}{R^m}+\frac{R}{2k^2}+\beta R^2, (ii) f(R)=αRγ+βRδf(R)=\alpha R^{\gamma} +\beta R^{\delta} and (iii) f(R)=αR2mβRm1+γRmf(R)=\frac{\alpha R^{2m}-\beta R^m}{1+\gamma R^m} . We demonstrate that even during the matter-dominated epoch of the universe, the f(R)f(R) gravity models under consideration can yield a non-vanishing matter-antimatter asymmetry. We constrain the model parameters of each model within the scenario of gravitational baryogenesis to produce the observed value of the baryon-to-entropy ratio, providing a continuous set of acceptable physical values for those parameters. Our results show highly consistent agreement to the baryon-to-entropy ratio with the observational bound from the cosmological data.

Keywords

Cite

@article{arxiv.2506.18949,
  title  = {Gravitational Baryogenesis Constraints on Nojiri-Odintsov $f(R)$ Gravity},
  author = {Kalyan Malakar and Mrinnoy M Gohain and Kalyan Bhuyan},
  journal= {arXiv preprint arXiv:2506.18949},
  year   = {2025}
}

Comments

20 pages; 8 figures and 6 tables