arXiv:2609.07800·v1·High Energy Physics — Phenomenology
Inelastic Singlet-Doublet Fermion Dark Matter in light of the 248 keV LZ event
Debasish Borah🇮🇳 · Sujit Kumar Sahoo🇮🇳 · Narendra Sahu🇮🇳 · Shashwat Sharma🇮🇳
Abstract
Recently, the LUX-ZEPLIN (LZ) collaboration reported the observation of a single dark matter (DM)-nucleus scattering event at a nuclear recoil energy of keV, corresponding to an exposure of 2.84 tonne-year. The absence of events at lower nuclear recoil energies in the predicted spectrum is naturally explained if the underlying process is inelastic DM-nucleus scattering. Motivated by this, we investigate the singlet-doublet fermion DM model, in which the DM consists of two pseudo-Dirac states: the Majorana nature of the lighter state forbids tree level -mediated elastic scattering identically, while the same states enable inelastic DM-nucleus scattering via exchange, with any residual elastic scattering proceeding only through a suppressed Higgs-mediated channel. We further extend the model with a -even scalar triplet, which is responsible both for generating the pseudo-Dirac splitting and for realizing Majorana neutrino masses via the Type-II seesaw mechanism.
Comments: 7 pages, 2 figures