Implication of preheating on gravity assisted baryogenesis in R2-Higgs inflation

Abstract

We investigate the impact of preheating on baryogenesis in R2-Higgs inflation. In this scenario, the inclusion of a dimension-six operator (R/ 2) Bμ Bμ abundantly generates helical hypermagnetic fields during inflation, leading to a baryon asymmetric Universe at the electroweak crossover. Focusing on the R2-like regime, we first derive the relevant dynamics of preheating using a doubly-covariant formalism. We find that preheating can happen for the Higgs, transverse gauge and Goldstone bosons, however, it is dependent on the value of the non-minimal coupling H between the Standard Model Higgs field and the Ricci scalar. We identify the preheating temperature to determine the appropriate scale for driving baryogenesis, which is around 2.2 \, (2.6) × 10-5\, M P for H 1 \, (10). Our results represent the most accurate estimation of the scale of gravity induced baryogenesis in R2-Higgs inflation to date. Areas for further improvement are identified.

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