The Black Hole Mass Gap as a New Probe of Millicharged Particles

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Hauptverfasser: Fiorillo, Damiano F. G., Lucente, Giuseppe, Sakstein, Jeremy, Vitagliano, Edoardo, Cantiello, Matteo
Format: Preprint
Veröffentlicht: 2026
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author Fiorillo, Damiano F. G.
Lucente, Giuseppe
Sakstein, Jeremy
Vitagliano, Edoardo
Cantiello, Matteo
author_facet Fiorillo, Damiano F. G.
Lucente, Giuseppe
Sakstein, Jeremy
Vitagliano, Edoardo
Cantiello, Matteo
contents We investigate the impact of millicharged particles (MCPs) on massive stars undergoing pulsational pair-instability supernovae and on the location of the lower edge of the black hole mass gap. We find that energy losses due to MCP emission weaken the pulsations, allowing the star to retain more mass and thereby shifting the lower edge of the mass gap to higher black hole masses. The mass gap is sensitive to a region of MCP parameter space with masses $35\,{\rm keV}\lesssim m_χ\lesssim 200\,{\rm keV}$ and charges $10^{-10}\lesssim q \lesssim 10^{-9}$, which remains unconstrained by existing astrophysical probes. If confirmed, recent gravitational wave observations placing the lower edge of the mass gap near $45\,{\rm M}_\odot$ would translate directly into bounds on this parameter space.
format Preprint
id arxiv_https___arxiv_org_abs_2604_02413
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle The Black Hole Mass Gap as a New Probe of Millicharged Particles
Fiorillo, Damiano F. G.
Lucente, Giuseppe
Sakstein, Jeremy
Vitagliano, Edoardo
Cantiello, Matteo
High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
High Energy Astrophysical Phenomena
We investigate the impact of millicharged particles (MCPs) on massive stars undergoing pulsational pair-instability supernovae and on the location of the lower edge of the black hole mass gap. We find that energy losses due to MCP emission weaken the pulsations, allowing the star to retain more mass and thereby shifting the lower edge of the mass gap to higher black hole masses. The mass gap is sensitive to a region of MCP parameter space with masses $35\,{\rm keV}\lesssim m_χ\lesssim 200\,{\rm keV}$ and charges $10^{-10}\lesssim q \lesssim 10^{-9}$, which remains unconstrained by existing astrophysical probes. If confirmed, recent gravitational wave observations placing the lower edge of the mass gap near $45\,{\rm M}_\odot$ would translate directly into bounds on this parameter space.
title The Black Hole Mass Gap as a New Probe of Millicharged Particles
topic High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2604.02413