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$Z'$ Portal Dark Matter in B−LB-L Scotogenic Dirac Model

Published 5 May 2018 in hep-ph | (1805.02025v1)

Abstract: In this paper, we perform a detail analysis on the phenomenology of $Z'$ portal scalar and Dirac fermion dark matter in B−LB-L scotogenic Dirac model. Unconventional B−LB-L charge QQ is assigned to the right-handed neutrino νR\nu_R in order to realise scotogenic Dirac neutrino mass at one-loop level, where three typical value Q=−14,−4,32Q=-\frac{1}{4},-4,\frac{3}{2} are chosen to illustrate. Observational properties involving dilepton signature at LHC, relativistic degrees of freedom NeffN_\text{eff}, dark matter relic density, direct and indirect detections are comprehensively studied. Combined results of these observables for the benchmark scenarios imply that the resonance region $M_\text{DM}\sim M_{Z'}/2$ is the viable parameter space. Focusing on the resonance region, a scanning for TeV-scale dark matter is also performed to obtain current allowed and future prospective parameter space.

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