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Toward a Comprehensive Exploration of Flavored Dark Matter Models

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arxiv 2511.10490 v2 pith:VWDC7ZK3 submitted 2025-11-13 hep-ph

Toward a Comprehensive Exploration of Flavored Dark Matter Models

classification hep-ph
keywords darkmattercomprehensiveconstraintscouplingsdetectiondirectflavor
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present a comprehensive framework for the study of flavored dark matter models, combining relic density calculations with direct and indirect detection limits, collider constraints, and a global analysis of flavor observables based on SMEFT matching and renormalization-group evolution. The framework applies to scalar or fermionic dark matter, including both self-conjugate and non-self-conjugate cases. As a proof of principle, we analyze two scenarios with Majorana dark matter coupling to right-handed charged leptons and to right-handed down-type quarks, assuming a thermal freeze-out. In the leptophilic case, flavor-violating decays such as $\mu \to e \gamma$ dominate the constraints, while LHC searches still leave sizable parameter space. For quark couplings, direct detection bounds and meson mixing severely restrict the allowed couplings, favoring hierarchical flavor structures. The toolchain presented in this paper is publicly available on GitHub (https://github.com/lena-ra/Flavored-Dark-Matter).

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Cited by 1 Pith paper

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  1. Conversion-Driven Baryogenesis in Flavored Dark Matter Models

    hep-ph 2026-07 conditional novelty 6.0

    Quark-philic flavored dark matter realizes conversion-driven baryogenesis via CP-violating mediator conversions, yielding viable DM masses up to ~1.2 TeV and long-lived-particle LHC signatures.