Mesogenesis through the Ephemeral Dark Decay of Beauty

Fuente: arXiv
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Main Authors: Davoudiasl, Hooman, Houtz, Rachel, Ipek, Seyda
Format: Preprint
Published: 2026
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author Davoudiasl, Hooman
Houtz, Rachel
Ipek, Seyda
author_facet Davoudiasl, Hooman
Houtz, Rachel
Ipek, Seyda
contents Mesogenesis provides a path for generating the baryon asymmetry of the Universe, using only the CP violation furnished by the Standard Model in the decay of $B$ mesons. While this is an intriguing possibility, it is largely constrained by the data on $B$ meson branching fractions into baryons and missing energy carried into the dark sector. We point out that it is possible to make this branching fraction dominant only in the early Universe, through an ultralight scalar coupled to the dark sector and the Standard Model leptons. A scenario is examined where the thermal density of muons in the early Universe temporarily lowers the mass of a dark fermion, allowing for efficient $B$ meson decays. This `dark' decay channel is shut off later when the muon number density falls, making the scenario compatible with flavor data. Our model can be consistent with the LHC constraints on color-charged heavy bosons required to implement Mesogenesis; such states may be discovered in the future runs as their masses cannot be far above the current bounds. We also outline other possible signals, which can arise in future displaced vertex searches, long range force searches, and observations of neutron star binary mergers.
format Preprint
id arxiv_https___arxiv_org_abs_2604_27099
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Mesogenesis through the Ephemeral Dark Decay of Beauty
Davoudiasl, Hooman
Houtz, Rachel
Ipek, Seyda
High Energy Physics - Phenomenology
Mesogenesis provides a path for generating the baryon asymmetry of the Universe, using only the CP violation furnished by the Standard Model in the decay of $B$ mesons. While this is an intriguing possibility, it is largely constrained by the data on $B$ meson branching fractions into baryons and missing energy carried into the dark sector. We point out that it is possible to make this branching fraction dominant only in the early Universe, through an ultralight scalar coupled to the dark sector and the Standard Model leptons. A scenario is examined where the thermal density of muons in the early Universe temporarily lowers the mass of a dark fermion, allowing for efficient $B$ meson decays. This `dark' decay channel is shut off later when the muon number density falls, making the scenario compatible with flavor data. Our model can be consistent with the LHC constraints on color-charged heavy bosons required to implement Mesogenesis; such states may be discovered in the future runs as their masses cannot be far above the current bounds. We also outline other possible signals, which can arise in future displaced vertex searches, long range force searches, and observations of neutron star binary mergers.
title Mesogenesis through the Ephemeral Dark Decay of Beauty
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2604.27099