Gravitational waves from primordial black hole isocurvature: the effect of non-Gaussianities

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: He, Xin-Chen, Cai, Yi-Fu, Ma, Xiao-Han, Papanikolaou, Theodoros, Saridakis, Emmanuel N., Sasaki, Misao
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866912157717757952
author He, Xin-Chen
Cai, Yi-Fu
Ma, Xiao-Han
Papanikolaou, Theodoros
Saridakis, Emmanuel N.
Sasaki, Misao
author_facet He, Xin-Chen
Cai, Yi-Fu
Ma, Xiao-Han
Papanikolaou, Theodoros
Saridakis, Emmanuel N.
Sasaki, Misao
contents Ultra-light primordial black holes (PBHs) with masses $M_{\rm PBH}<5\times 10^8\mathrm{g}$ can dominate transiently the energy budget of the Universe and reheat the Universe through their evaporation taking place before Big Bang Nucleosynthesis. The isocurvature energy density fluctuations associated to the inhomogeneous distribution of a population of such PBHs can induce an abundant production of GWs due to second-order gravitational effects. In this work, we discuss the effect of primordial non-Gaussianity on the clustering properties of PBHs and study the effect of a clustered PBH population on the spectral shape of the aforementioned induced GW signal. In particular, focusing on local-type non-Gaussianity we find a double-peaked GW signal with the amplitude of the low-frequency peak being proportional to the square of the non-Gaussian parameter $τ_\mathrm{NL}$. Remarkably, depending on the PBH mass $M_{\rm PBH}$ and the initial abundance of PBHs at formation time, i.e. $Ω_\mathrm{PBH,f}$, this double-peaked GW signal can lie well within the frequency bands of forthcoming GW detectors, namely LISA, ET, SKA and BBO, hence rendering this signal falsifiable by GW experiments and promoting it as a novel portal probing the primordial non-Gaussianity.
format Preprint
id arxiv_https___arxiv_org_abs_2409_11333
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Gravitational waves from primordial black hole isocurvature: the effect of non-Gaussianities
He, Xin-Chen
Cai, Yi-Fu
Ma, Xiao-Han
Papanikolaou, Theodoros
Saridakis, Emmanuel N.
Sasaki, Misao
Cosmology and Nongalactic Astrophysics
General Relativity and Quantum Cosmology
Ultra-light primordial black holes (PBHs) with masses $M_{\rm PBH}<5\times 10^8\mathrm{g}$ can dominate transiently the energy budget of the Universe and reheat the Universe through their evaporation taking place before Big Bang Nucleosynthesis. The isocurvature energy density fluctuations associated to the inhomogeneous distribution of a population of such PBHs can induce an abundant production of GWs due to second-order gravitational effects. In this work, we discuss the effect of primordial non-Gaussianity on the clustering properties of PBHs and study the effect of a clustered PBH population on the spectral shape of the aforementioned induced GW signal. In particular, focusing on local-type non-Gaussianity we find a double-peaked GW signal with the amplitude of the low-frequency peak being proportional to the square of the non-Gaussian parameter $τ_\mathrm{NL}$. Remarkably, depending on the PBH mass $M_{\rm PBH}$ and the initial abundance of PBHs at formation time, i.e. $Ω_\mathrm{PBH,f}$, this double-peaked GW signal can lie well within the frequency bands of forthcoming GW detectors, namely LISA, ET, SKA and BBO, hence rendering this signal falsifiable by GW experiments and promoting it as a novel portal probing the primordial non-Gaussianity.
title Gravitational waves from primordial black hole isocurvature: the effect of non-Gaussianities
topic Cosmology and Nongalactic Astrophysics
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2409.11333