Generation of primordial black holes from an inflation model with modified dispersion relation
Abstract
A primordial black hole (PBH) is interesting to people for its ability of explaining dark matter as well as supermassive astrophysical objects. In the normal inflation scenario, the generation of PBHs usually requires an enhanced power spectrum of scalar perturbation at the end of inflation era, which is expected when the dispersion relation of the inflaton field gets modified. In this work, we study a kind of inflation model called {the \it Dirac-Born-Infeld-inspired nonminimal kinetic coupling (DINKIC)} model, where the dispersion relation is modified by a square root existing in the field Lagrangian. We discuss the enhancement of scalar power spectrum due to the modified dispersion relation, as well as the abundance of PBHs produced by the Press-Schechter collapse mechanism. We also discuss the formation of scalar-induced gravitational waves by linear scalar perturbations.
Keywords
Cite
@article{arxiv.2212.03403,
title = {Generation of primordial black holes from an inflation model with modified dispersion relation},
author = {Taotao Qiu and Wenyi Wang and Ruifeng Zheng},
journal= {arXiv preprint arXiv:2212.03403},
year = {2023}
}
Comments
13 pages, 5 figures