Reheating constraints on mutated hilltop inflation
Abstract
Future research studies of cosmic microwave background polarization seems likely to provide a more improved upper bound of on the tensor-to-scalar ratio(r). In our work, we have done the reheating study of mutated hilltop inflation(MHI), a model falling in the broad category of small field inflation. We have parameterized reheating in terms of various parameters like reheating duration , reheating temperature and effective equation of state using observationally viable values of scalar power spectrum amplitude and scalar spectral index . In our study, working over a range of , we found that the MHI potential is well consistent with combined Planck and BK18 observations for within a particular range of model's parameter space and the lower values of the model parameter in MHI generate considerably smaller r compared to normal hilltop potential without any incompatibility of with observational data, making MHI a better choice in accordance to recent and future studies.
Keywords
Cite
@article{arxiv.2401.09806,
title = {Reheating constraints on mutated hilltop inflation},
author = {Sudhava Yadav and Dhwani Gangal and K. K. Venkataratnam},
journal= {arXiv preprint arXiv:2401.09806},
year = {2024}
}