Millicharged Particle Production During Late-Stage Stellar Evolution

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Auteurs principaux: Fiorillo, Damiano F. G., Lucente, Giuseppe, Sakstein, Jeremy, Vitagliano, Edoardo
Format: Preprint
Publié: 2026
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author Fiorillo, Damiano F. G.
Lucente, Giuseppe
Sakstein, Jeremy
Vitagliano, Edoardo
author_facet Fiorillo, Damiano F. G.
Lucente, Giuseppe
Sakstein, Jeremy
Vitagliano, Edoardo
contents Stars are natural sources of feebly interacting particles, including putative particles with mass $m_χ$ and electric charge $qe$. The emission of such millicharged particles (MCPs) causes an energy loss which can alter stellar evolution. While MCP production rates have been computed for different plasma parameters, they have yet to be derived for the conditions relevant to late stages of stellar evolution, in which the temperature can reach values $T\simeq 10-100\,\rm keV$ while the plasma frequency is $ω_{\rm pl}\ll T$. In this paper, we compute the MCP energy-loss rates relevant for pre-supernova objects, finding three different regimes in which the dominant processes are respectively plasmon decay ($m_χ< ω_{\rm pl}/2$), Compton-like scattering ($m_χ> ω_{\rm pl}/2$, $T\lesssim 0.5\,\rm MeV$), and electron-positron annihilation. We obtain semi-analytical fits for the energy-loss rates suitable for implementation in stellar evolution codes.
format Preprint
id arxiv_https___arxiv_org_abs_2604_02419
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Millicharged Particle Production During Late-Stage Stellar Evolution
Fiorillo, Damiano F. G.
Lucente, Giuseppe
Sakstein, Jeremy
Vitagliano, Edoardo
High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
High Energy Astrophysical Phenomena
Stars are natural sources of feebly interacting particles, including putative particles with mass $m_χ$ and electric charge $qe$. The emission of such millicharged particles (MCPs) causes an energy loss which can alter stellar evolution. While MCP production rates have been computed for different plasma parameters, they have yet to be derived for the conditions relevant to late stages of stellar evolution, in which the temperature can reach values $T\simeq 10-100\,\rm keV$ while the plasma frequency is $ω_{\rm pl}\ll T$. In this paper, we compute the MCP energy-loss rates relevant for pre-supernova objects, finding three different regimes in which the dominant processes are respectively plasmon decay ($m_χ< ω_{\rm pl}/2$), Compton-like scattering ($m_χ> ω_{\rm pl}/2$, $T\lesssim 0.5\,\rm MeV$), and electron-positron annihilation. We obtain semi-analytical fits for the energy-loss rates suitable for implementation in stellar evolution codes.
title Millicharged Particle Production During Late-Stage Stellar Evolution
topic High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2604.02419