On gravitational baryogenesis in inflationary f(R) Cosmologies
astro-ph.CO, hep-ph
Submitted: 2026-02-22
Updated: 2026-09-15
Comments: Chane of title, additional text and references
License: http://creativecommons.org/licenses/by/4.0/
The gist: The present study investigates the feasibility of generating the observed baryon-antibaryon asymmetry of the Universe η by gravitational baryogenesis during the inflationary phase of two f(R)
Terminology
Abstract
The present study investigates the feasibility of generating the observed baryon-antibaryon asymmetry of the Universe η by gravitational baryogenesis during the inflationary phase of two f(R) modified theories of gravity: the widely used Starobinsky f(R)=R+R squared/M squared model, and the recently proposed power-law model f(R)=c 1R 2+k/4+c 2R+c 3 of Odintsov and Oikonomou (2025). The present investigation is undertaken in the Einstein frame. The motion of the scalaron is studied for the slow roll inflationary era using analytic approximate solutions. Some of the expressions for the Starobinsky model were obtained first by Motohashi and Nishizawa (2012) but the expressions for the power-law model of Odintsov and Oikonomou and its generalization are new. Although the values of η calculated for both models are quite close to the observed value, they are based upon several assumptions that qualify these results. Asymmetries generated before the end of inflation must be diluted, making agreement with observation difficult to achieve unless baryogenesis occurs at the end of the inflation era. The calculations also assume rapid thermalization of the plasma of the gravitationally produced particles, and that the interaction rate of the baryon-violating processes is greater than the expansion rate of the Universe until decoupling. The present calculations strongly violate these assumptions and would require significant variation of input parameters, which is excluded by CMB observations, to obtain agreement. A complete treatment of thermalization of the gravitationally produced plasma, baryon-number violating freeze-out, and entropy dilution is required to establish whether or not gravitational baryogenesis during slow-roll inflation is a viable mechanism for producing the observed baryon asymmetry of the Universe for these inflationary f(R) cosmologies.
Sources
- Baryogenesis
- Precision measures of the primordial abundance of deuterium
- Planck 2015 results. XIII. Cosmological parameters
- Bubble Trouble: a Review on Electroweak Baryogenesis
- Gravitational Baryogenesis
- Inflation (2025)
- Unified cosmic history in modified gravity: from F(R) theory to Lorentz non-invariant models
- Modified Gravity Theories on a Nutshell: Inflation, Bounce and Late-time Evolution
- Reheating after f(R) inflation
- Building Models of Inflation in No-Scale Supergravity
- Deformations of Starobinsky Inflation in No-Scale SU(5) and SO(10) GUTs
- Curing singularities in cosmological evolution of F(R) gravity
- Cosmological gravitational particle production and its implications for cosmological relics
- Baryo-Leptogenesis induced by modified gravities in the primordial Universe
- Baryogenesis in Nonminimally Coupled $f(R)$ Theories
- Gauss-Bonnet Gravitational Baryogenesis
- Loop Quantum Cosmology Gravitational Baryogenesis
- $f(T)$ gravitational baryogenesis
- Baryon asymmetry from higher-order matter contributions in gravity
- Scalar-tensor baryogenesis: a scalar-tensor completion of gravitational baryogenesis
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