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Loop enhancement of direct detection cross section in a fermionic dark matter model

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arxiv 2211.12102 v2 pith:2ZJTC6BM submitted 2022-11-22 hep-ph hep-ex

Loop enhancement of direct detection cross section in a fermionic dark matter model

classification hep-ph hep-ex
keywords regionsdarkdetectiondirectloopmattermodelcorrections
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We investigate the effect of one loop quantum corrections on the elastic scattering of dark matter off the nucleon in a fermionic dark matter model. The model introduces two new singlet fermions and a singlet scalar. The fermions communicate with the SM particles through a Higgs portal. It is found that some viable regions in the parameter space respecting the bounds from the observed relic density, the Higgs invisible decay width, and direct detection experiment, will be shrunk significantly when one loop effects are taken into account. The regions already resided below the neutrino floor, partly may come into regions which are testable by the current or future direct detection experiments. In addition, some regions being viable at tree level, may be excluded when quantum corrections are included.

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    A 2HDM extended by a complex singlet uses tree-level MPP to motivate degenerate neutral Higgs masses, yielding viable DM phenomenology and a thermally induced strong first-order electroweak phase transition.