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Primordial black holes from a curvaton scenario with strongly non-Gaussian perturbations

Published 6 Jul 2023 in astro-ph.CO, gr-qc, and hep-ph | (2307.03078v2)

Abstract: We investigate the production of primordial black holes (PBHs) in a mixed inflaton-curvaton scenario with a quadratic curvaton potential, assuming the curvaton is in de Sitter equilibrium during inflation with $\langle \chi\rangle =0$. In this setup, the curvature perturbation sourced by the curvaton is strongly non-Gaussian, containing no leading Gaussian term. We show that for $m2/H2\gtrsim 0.3$, the curvaton contribution to the spectrum of primordial perturbations on CMB scales can be kept negligible but on small scales the curvaton can source PBHs. In particular, PBHs in the asteroid mass range $10{-16}M_{\odot}\lesssim M\lesssim 10{-10}M_{\odot}$ with an abundance reaching $f_{\rm PBH} = 1$ can be produced when the inflationary Hubble scale $H\gtrsim 10{12}$ GeV and the curvaton decay occurs in the window from slightly before the electroweak transition to around the QCD transition.

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