arXiv:2512.05850·v3·High Energy Physics — Phenomenology
Dark Matter implications from the LZ, PandaX-4T and XENONnT Data
Haipeng An🇨🇳 · Fei Gao🇨🇳 · Jia Liu🇨🇳 · Minghao Liu🇨🇳 · Haoming Nie🇨🇳 · Changlong Xu🇨🇳
Abstract
We investigate a possible dark matter origin of the high-energy nuclear-recoil-like events in data from liquid xenon time projection chamber experiments, including LZ, PandaX-4T, and XENONnT, which cannot be explained by standard elastic spin-independent WIMP scattering. Using our unified DIAMX framework, built on openly available data and likelihood models, we perform the first combined profile-likelihood fits to multiple WIMP-search datasets with a total exposure of approximately 8.8 tonne year. We consider two broad classes of dark matter-nucleon interactions, involving either velocity-dependent cross sections or inelastic (endo- and exothermic) scattering, which can reproduce the observed high-energy recoil spectrum, reaching local significances up to . We further quantify the impact of Xe double electron capture (DEC) backgrounds, finding that variations in the poorly known DEC charge yields can shift the inferred significances from a null-like result to . We further note that extending the same analysis to data from all three experiments with recoil energies up to , when available, will provide a powerful test of the dark matter interpretation, since the Xe DEC background is expected to be negligible in this high-energy range.
Comments: 8 pages, 5 figures