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Opening the Higgs Portal to Lepton-Flavoured Dark Matter
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abstract
We study a simplified model of lepton-flavoured complex scalar dark matter coupling to right-handed leptons and the Higgs boson. The model is set up in the Dark Minimal Flavour Violation framework. In contrast to previous studies of similar models we consider the most general case and do not a priori constrain the hierarchy of dark matter masses and couplings in any way. In the first part of the analysis we discuss the impact of Higgs portal interactions and the generalised mass hierarchy on the model's phenomenology. We find that they render new physics masses around the electroweak scale viable, thus qualifying this model to address the $(g-2)_\mu$ puzzle. After reviewing the current situation of the latter, we perform two combined analyses -- one in which $(g-2)_\mu$ allows for significant new physics effects and one in which it does not. We find that while the latter scenario allows for a larger range of new physics scales, both scenarios are equally viable.
Forward citations
Cited by 3 Pith papers
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Connecting $t$-channel Dark Matter Models to the Standard Model Effective Field Theory
One-loop SMEFT Wilson coefficients for leptophilic t-channel dark matter, combined with global fits, exclude large coupling regions, especially C_ell_ell for doublet mediators and C_ed above 3 TeV.
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Fermion-Portal Dark Matter at a High-Energy Muon Collider
At a 10 TeV muon collider, fermion-portal dark matter mediators could be discovered up to about 4.7 TeV, and including the muon parton distribution in simulations lowers the predicted reach and changes signal shapes.
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Toward a Comprehensive Exploration of Flavored Dark Matter Models
A new public toolchain maps the allowed parameter space of flavored Majorana dark matter models under relic density, direct/indirect detection, LHC, and flavor constraints, finding severe limits from mu->e gamma in th...
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