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Inelastic Dark Matter Signature at High Recoil Energy in LUX-ZEPLIN and CRESST

Published 1 Sep 2026 in hep-ph | (2609.01475v1)

Abstract: The LUX--ZEPLIN Collaboration recently reported one event at Enr=248±23 keVE_{\mathrm{nr}}=248\pm23~\mathrm{keV} with an exposure of 2.84 tonneyr2.84~\mathrm{tonne\cdot yr}. In this Letter, we interpret this feature using endothermic dark matter (DM). We consider both direct scattering of the surviving ground-state halo component and the contribution of excited states produced by terrestrial upscattering. Our calculations show that explaining the high-energy event requires mχ500 GeVm_χ\gtrsim500~\mathrm{GeV} and a mass splitting of O(300) keV\mathcal{O}(300)~\mathrm{keV}, for which the production of excited states inside the Earth is kinematically forbidden. For σˉ<em>n=10<sup>37 cm<sup>2\barσ<em>n=10<sup>{-37}~\mathrm{cm<sup>2}, an illustrative two-bin likelihood analysis yields a representative best-fit point at (m</em>χ,δ)(1.105 TeV,350 keV)(m</em>χ,δ)\simeq(1.105~\mathrm{TeV},350~\mathrm{keV}). The preferred parameter region may be tested by the planned CRESST upgrade.

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