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Effective WIMPs

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arxiv 1307.8120 v1 pith:H4XGFSSG submitted 2013-07-30 hep-ph astro-ph.HEhep-ex

classification hep-phastro-ph.HEhep-ex
keywords darkmattercollidermodelmodelsdetectiondirectparticles
verification ladder T0 review T1 audit T2 compute T3 formal
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The 'WIMP miracle' for the relic abundance of thermal dark matter motivates weak scale dark matter with renormalizable couplings to standard model particles. We study minimal models with such couplings that explain dark matter as a thermal relic. The models contain a singlet dark matter particle with cubic renormalizable couplings between standard model particles and 'partner' particles with the same gauge quantum numbers as the standard model particle. The dark matter has spin 0, 1/2, or 1, and may or may not be its own antiparticle. Each model has 3 parameters: the masses of the dark matter and standard model partners, and the cubic coupling. Requiring the correct relic abundance gives a 2-dimensional parameter space where collider and direct detection constraints can be directly compared. We focus on the case of dark matter interactions with colored particles. We find that collider and direct detection searches are remarkably complementary for these models. Direct detection limits for the cases where the dark matter is not its own antiparticle require dark matter masses to be in the multi-TeV range, where they are extremely difficult to probe in collider experiments. The models where dark matter is its own antiparticle are strongly constrained by collider searches for monojet and jets + MET signals. These models are constrained by direct detection mainly near the limit where the dark matter and partner masses are nearly degenerate, where collider searches become more difficult.

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Cited by 3 Pith papers

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  1. Fermion-Portal Dark Matter at a High-Energy Muon Collider

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    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.

  2. The 96 GeV Diphoton Excess in the Seesaw Extensions of the Natural NMSSM

    hep-ph 2019-08 conditional novelty 5.0 of 10

    In the seesaw-extended NMSSM, a ~96 GeV scalar can reproduce both the LEP bbbar and CMS diphoton excesses while the sneutrino dark matter passes all current constraints, in three parameter regions.

  3. Indirect detection imprint of leptophilic dark matter

    hep-ph 2019-09 conditional novelty 4.0 of 10

    Updated indirect-detection limits on leptophilic dark matter effective operators exclude most sub-TeV tau-flavored scenarios and leave only narrow allowed windows plus a high-mass region.

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