English

Detection of Inelastic Dark Matter via Electron Recoils in SENSEI

High Energy Physics - Phenomenology 2022-10-07 v2

Abstract

The low-threshold experiment SENSEI, which uses the ultralow-noise silicon Skipper-CCD to explore light dark matter from the halo, has achieved the most rigorous limitations on light DM-electron scattering cross section. In this work, we investigate the inelastic DM-electron scattering process with the SENSEI data and derive the constraints on the inelastic dark matter model with a U(1)U(1) gauge boson as the mediator. Comparing with elastic scattering process, we find that the down-scattering process with the mass splitting δmχ2mχ1<0\delta \equiv m_{\chi_2}-m_{\chi_1}<0 is more strongly constrained while the up-scattering process δ>0\delta>0 gets the weaker limits. For the down-scattering process with mass splitting δ5\delta \sim -5 eV, the DM mass mχm_{\chi} can be excluded down to as low as 0.1 MeV.

Keywords

Cite

@article{arxiv.2203.06664,
  title  = {Detection of Inelastic Dark Matter via Electron Recoils in SENSEI},
  author = {Yuchao Gu and Lei Wu and Bin Zhu},
  journal= {arXiv preprint arXiv:2203.06664},
  year   = {2022}
}

Comments

4 figures, 1 table, some discussions and references added; match the published version in PRD