Probing mixed-state dark matter and $b \to s μ^+μ^-$ anomalies in a scalar-assisted baryonic gauge theory

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Hauptverfasser: Taramati, Mohapatra, Manas Kumar, Patel, Utkarsh, Mohanta, Rukmani, Patra, Sudhanwa
Format: Preprint
Veröffentlicht: 2026
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author Taramati
Mohapatra, Manas Kumar
Patel, Utkarsh
Mohanta, Rukmani
Patra, Sudhanwa
author_facet Taramati
Mohapatra, Manas Kumar
Patel, Utkarsh
Mohanta, Rukmani
Patra, Sudhanwa
contents We explore a Standard Model extension based on a local $U(1)_B$ symmetry, where a baryon-charged scalar mediates interactions between a fermionic dark matter candidate and Standard Model quarks. In this setup, the dark matter relic abundance is shaped not only by standard annihilation channels but also by additional coannihilation processes induced by a new scalar. The presence of this mediator provides a unified link between dark sector and flavor physics, yielding distinctive phenomenological consequences. We conduct a detailed study of dark matter phenomenology, emphasizing the role of the mass splitting between the dark matter particles, and the scalar mediator in determining the efficiency of coannihilation. The parameter space is examined in light of existing constraints from cosmological observations, direct and indirect detection experiments, as well as the collider searches at the \texttt{LHC}. Our analysis shows that the extended scalar sector opens up viable regions of parameter space beyond those accessible in minimal \(U(1)_B\) realizations, many of which are expected to be tested by forthcoming searches at \texttt{XENONnT} and \texttt{CTA}. Moreover, the model induces correlated signatures from flavor observables associated with the $b \to s μ^+ μ^-$ transitions as well, serving as complementary tests of the underlying framework.
format Preprint
id arxiv_https___arxiv_org_abs_2602_11571
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Probing mixed-state dark matter and $b \to s μ^+μ^-$ anomalies in a scalar-assisted baryonic gauge theory
Taramati
Mohapatra, Manas Kumar
Patel, Utkarsh
Mohanta, Rukmani
Patra, Sudhanwa
High Energy Physics - Phenomenology
We explore a Standard Model extension based on a local $U(1)_B$ symmetry, where a baryon-charged scalar mediates interactions between a fermionic dark matter candidate and Standard Model quarks. In this setup, the dark matter relic abundance is shaped not only by standard annihilation channels but also by additional coannihilation processes induced by a new scalar. The presence of this mediator provides a unified link between dark sector and flavor physics, yielding distinctive phenomenological consequences. We conduct a detailed study of dark matter phenomenology, emphasizing the role of the mass splitting between the dark matter particles, and the scalar mediator in determining the efficiency of coannihilation. The parameter space is examined in light of existing constraints from cosmological observations, direct and indirect detection experiments, as well as the collider searches at the \texttt{LHC}. Our analysis shows that the extended scalar sector opens up viable regions of parameter space beyond those accessible in minimal \(U(1)_B\) realizations, many of which are expected to be tested by forthcoming searches at \texttt{XENONnT} and \texttt{CTA}. Moreover, the model induces correlated signatures from flavor observables associated with the $b \to s μ^+ μ^-$ transitions as well, serving as complementary tests of the underlying framework.
title Probing mixed-state dark matter and $b \to s μ^+μ^-$ anomalies in a scalar-assisted baryonic gauge theory
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2602.11571