arXiv:2407.00969·v2·High Energy Physics — Phenomenology
Dark matter-electron scattering and freeze-in scenarios in the light of mediation
Basabendu Barman🇮🇳 · Arindam Das🇯🇵 · Sanjoy Mandal🇰🇷
Abstract
We investigate dark matter (DM)-electron scattering in a minimal extension of the Standard Model (SM), where the DM can appear as a Majorana fermion, a complex singlet scalar or a Dirac fermion. To study bounds on the gauge coupling and new gauge boson mass , from DM-electron scattering, we consider several direct search experiments like CDMS, DAMIC, SENSEI, PandaX-II, DarkSide-50 and XENON1T-S2 for different charges. In this set-up we consider DM production via freeze-in both in radiation dominated and modified cosmological background to project sensitivities on plane satisfying observed relic abundance. DM-electron scattering could provide comparable, or even stronger bounds than those obtained from the electron/ muon , low energy scattering and intensity frontier experiments within 0.01 GeV 0.1 GeV. Constrains from freeze-in could provide stronger sensitivities for GeV, however, these limits are comparable to those obtained from LHCb, LEP experiments for GeV GeV. In future, electron-muon scattering (MUonE), proton (FASER, DUNE) and electron/positron (ILC) beam dump experiments could probe these parameters.
Comments: 22 pages, 6 figures, version accepted for publication in PRD