Primordial blackhole formation: Exploring chaotic potential with a sharp step via the GLMS perspective
Abstract
A sharp step on a chaotic potential can enhance primordial curvature fluctuations on smaller scales to the to form primordial black holes (PBHs). The present study discusses an inflationary potential with a sharp step that results in the formation of PBHs in four distinct mass ranges. Also this inflationary model allows the separate consideration of observable parameters and on the CMB scale from the physics at small scales, where PBHs formation occur. In this work we computed the fractional abundance of PBHs () using the GLMS approximation of peak theory and also the Press-Schechter (PS) formalism. In the two typical mass windows, and , calculated using the GLMS approximation is nearly equal to 1 and that calculated via PS is of . In the other two mass windows and , obtained using GLMS approximation is 0.01 and 0.001 respectively, while calculated via PS formalism yields and . The results obtained via GLMS approximation are found to be consistent with observational constraints. A comparative analysis of obtained using the GLMS perspective and the PS formalism is also included.
Cite
@article{arxiv.2411.10076,
title = {Primordial blackhole formation: Exploring chaotic potential with a sharp step via the GLMS perspective},
author = {Rinsy Thomas and Jobil Thomas and Minu Joy},
journal= {arXiv preprint arXiv:2411.10076},
year = {2024}
}