PAPER / ARXIV:2609.17935
Chuan-Yang Xing
RESUMO
The LUX-ZEPLIN experiment reported a candidate nuclear recoil at $248\,\mathrm{keV}$. This work proposes that endothermic self-scattering $\chi_1\chi_1\to\chi_2\chi_2$ in the Galaxy can produce an excited dark matter population, whose exothermic scattering $\chi_2 A\to\chi_1 A$ in xenon can account for the LZ candidate event. In a benchmark with a light scalar mediator, the conversion cross section is large enough for high-velocity Galactic dark matter particles to generate an excited fraction at the percent level. For dark matter masses near the TeV scale and splittings below $1\,\mathrm{MeV}$, the xenon recoil spectrum covers the candidate region and can yield an $\mathcal O(1)$ event count.
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