Electroweak inelastic DM · Constraint
Testing Higgs-Coupled Minimal Dark Matter with Solar Neutrinos after the LZ High-Recoil Event
- Published
- September 14, 2026
- Identifier
- arXiv:2609.19174
Why it is here
A detailed solar-neutrino stress test leaves the light Higgs-coupled benchmarks in strong tension while making the heaviest cases response dependent.
Machine-assisted summary
The author recomputes solar capture and post-capture evolution for Higgs-coupled minimal-dark-matter benchmarks, finding that the two light thermal cases lie well above IceCube sensitivity and extending the comparison to heavier electroweak representations.
Citation lineage on this map
Cites 15
- Inelastic Dark Matter Signature at High Recoil Energy in LUX-ZEPLIN and CRESSTLiangliang Su, Jin Min Yang, Wen-Na Yang · 2026
- Higgsino Above the Sea of FogJiJi Fan, Matthew Reece · 2026
- Higgsino Dark Matter Interpretation of the LUX-ZEPLIN 248 keV Nuclear-Recoil EventKatherine Freese, Dionysios P. Theodosopoulos · 2026
- TeV Higgsino Dark Matter from LZ Nuclear Recoil to Fermi-LAT Gamma RaysLei Wu, Yang Zhang, Bin Zhu · 2026
- Dark Matter at the Kinematic Edge: Interpreting the 248 keV LZ Nuclear-Recoil CandidateMattia Di Mauro · 2026
- Strong Constraints on Higgsino Dark Matter from Solar CaptureMaxim Pospelov, Harikrishnan Ramani · 2026
- Search for dark matter particle interactions in an extended nuclear recoil energy window with the LUX-ZEPLIN (LZ) experimentLZ Collaboration · 2026
- Inelastic Dark Photon Dark Matter for the LUX-ZEPLIN High-Recoil Event and the Galactic Halo Gamma-Ray ExcessKimiko Yamashita · 2026
- Inelastic Signatures of Electroweak Dark MatterJuri Smirnov, Spencer Griffith, John F. Beacom · 2026
- TeV Higgsino Interpretation of the LZ High-Recoil Event with Intermediate-Scale Electroweak GauginosXiaokang Du, Fei Wang · 2026
- Confronting the Higgsino Interpretation of the LZ Event with the High-Energy SidebandNicholas L. Rodd, Benjamin R. Safdi, Tracy R. Slatyer, Weishuang Linda Xu · 2026
- Seasonal dark matter from the LUX-ZEPLIN high-energy eventChristopher McCabe · 2026
- Solar Capture Tests of Inelastic Dark Matter after the LZ High-Recoil EventMattia Di Mauro, Halim Shaikh · 2026
- Not so good νs for Higgsino dark matter as LZ excess: stringent limits from Super-Kamiokande and IceCubeDebajit 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 · 2026
- Mixing-suppressed inelastic dark matter: a minimal model for the LZ 248 keV eventSeung J. Lee, Taewook Youn · 2026
Cited by 11
- LUX-ZEPLIN's Stairway to Hea$\nu$en: limits on elastic scatters of dark matter from solar captureDebajit Bose, Thong T. Q. Nguyen, Akash Kumar Saha, Nirmal Raj, Tarak Nath Maity, Ranjan Laha · 2026
- The 248 keV LZ Recoil: A Possible Hint of Non-SM-Like Quark Yukawa Couplings with a Scalar-Portal Dark MatterBibhabasu De · 2026
- A closer look at the LZ 248 keV event through the lens of cosmic-ray boosted dark matterBhavesh Chauhan, Soham Sahasrabuddhe, Manibrata Sen · 2026
- The LHC is not enough: the LZ High-Recoil Event at FCC-hh and a Muon ColliderBenedikt Maier, Michael Spannowsky · 2026
- Environment-dependent mass splitting to suppress solar capture in the inelastic-doublet interpretation of the LZ eventSudhakantha Girmohanta, Tae Hyun Jung · 2026
- Inelastic dark matter mediated by natural dark photonJie Tang, Pei-Hong Gu · 2026
- GAIA meets LZ: a high velocity tail-tale sign for dark matterAnirban Das, Subhabrata Majumdar, Manibrata Sen, Amogh Srivastav · 2026
- Endothermic Dark Matter at LZ from a Decaying ParentYongsoo Jho, Sanghwan Kim, Seong Chan Park · 2026
- Decaying Dark Matter for the Exothermic Recoil at LZYongsoo Jho, Sanghwan Kim, Seong Chan Park · 2026
- Constraints on Complex Electroweak WIMPs from Solar CaptureJuan P. Luengas, Maxim Pospelov, Harikrishnan Ramani · 2026
- Can Nuclear Recoils and Solar Neutrinos Resolve the Composition of Singlino-Higgsino Dark Matter?Jingwei Lian, Jin Min Yang · 2026
Metadata comes from arXiv. Summaries and placement are machine-assisted; inclusion is not endorsement or peer review.