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Global fits of simplified models for dark matter with GAMBIT I. Scalar and fermionic models with s-channel vector mediators

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arxiv 2209.13266 v2 pith:DA3EKVFB submitted 2022-09-27 hep-ph

Global fits of simplified models for dark matter with GAMBIT I. Scalar and fermionic models with s-channel vector mediators

classification hep-ph
keywords darkmattermodelsdetectionsimplifiedvectorcandidatedirac
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Simplified models provide a useful way to study the impacts of a small number of new particles on experimental observables and the interplay of those observables, without the need to construct an underlying theory. In this study, we perform global fits of simplified dark matter models with GAMBIT using an up-to-date set of likelihoods for indirect detection, direct detection and collider searches. We investigate models in which a scalar or fermionic dark matter candidate couples to quarks via an s-channel vector mediator. Large parts of parameter space survive for each model. In the case of Dirac or Majorana fermion dark matter, excesses in LHC monojet searches and relic density limits tend to prefer the resonance region, where the dark matter has approximately half the mass of the mediator. A combination of vector and axial-vector couplings to the Dirac candidate also leads to competing constraints from direct detection and unitarity violation.

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