arXiv:2607.18378·v2·Cosmology and Nongalactic Astrophysics
Probing large mass-splitting inelastic Dark Matter with RES-NOVA
D. Alloni🇮🇹 · G. Benato🇮🇹 · P. Carniti🇮🇹 · M. Cataldo🇮🇹 · L. Chen🇨🇳 · M. Clemenza🇮🇹 · M. Consonni🇮🇹 · G. Croci🇮🇹 · I. Dafinei🇮🇹 · F.A. Danevich🇺🇦 · C. de Vecchi🇮🇹 · D. Di Martino🇮🇹
Abstract
Probing inelastic dark matter at large mass splittings requires heavy target nuclei, an extended recoil-energy range, and the high-velocity tail of the dark-matter distribution. We exploit these features with the RES-NOVA prototype detector, featuring a PbWO4 cryogenic calorimeter, produced from archaeological Pb and operated at the deep-underground laboratory of Gran Sasso of INFN (Italy), analyzing a 32.4 g day exposure over 2.5 keV - 1 MeV under both the Standard Halo Model (SHM) and a Large Magellanic Cloud (LMC)-motivated velocity distribution. We extend direct-detection constraints beyond the 330 keV reach of established technologies (e.g. Xe-based TPCs), probing splittings up to 510 (780) keV in the SHM (LMC) benchmark, while future exposures will probe new regions of the parameter space.
Comments: reference update