arXiv:2609.07807·v1·High Energy Physics — Phenomenology
Not so good s for Higgsino dark matter as LZ excess: stringent limits from Super-Kamiokande and IceCube
Debajit Bose🇮🇳 · Akash Kumar Saha🇮🇳 · Deep Jyoti Das🇮🇳 · Rinchen Sherpa🇮🇳 · Abhijeet Singh🇮🇳 · Durba Ghosh🇮🇳 · Jaya Doliya🇮🇳 · Subhadip Bouri🇮🇳 · Biprajit Mondal🇮🇳 · Ranjini Mondol🇮🇳 · Nirmal Raj🇮🇳 · Ranjan Laha🇮🇳
Abstract
The LUX-ZEPLIN (LZ) collaboration has recently reported a single nuclear recoil event at a high recoil energy of about 250 keV. This has been interpreted as inelastic scattering of dark matter that is a supersymmetric Higgsino with a mass splitting between the neutral states of a few 100 keV. Such dark matter may be captured at high recoil in the Sun through scattering on heavy elements in it, and annihilate to and , in turn giving rise to a neutrino flux detectable on Earth. Using measurements of atmospheric electron- and muon-neutrino fluxes by Super-Kamiokande and IceCube, we constrain thermal and non-thermal Higgsino dark matter, excluding inter-state mass splittings keV. This disfavors Higgsino-like interpretations of the LZ event for standard halo velocities.
Comments: 5 pages + refs, 5 figures. Comments are welcome