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Status and prospects of light bino-higgsino dark matter in natural SUSY

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arxiv 1705.09164 v3 pith:GGXC6XEB submitted 2017-05-25 hep-ph

classification hep-ph
keywords darklimitsmattertildebino-higgsinoconstraintscrossexperiment
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Given the recent progress in dark matter direction detection experiments, we examine a light bino-higgsino dark matter (DM) scenario ($M_1<100$ GeV and $\mu<300$ GeV) in natural supersymmetry with the electroweak fine tuning measure $\Delta_{EW}<30$. By imposing various constraints, we note that: (i) For $sign(\mu/M_1)=+1$, the parameter space allowed by the DM relic density and collider bounds can almost be excluded by the very recent spin-independent (SI) scattering cross section limits from the XENON1T (2017) experiment. (ii) For $sign(\mu/M_1)=-1$, the SI limits can be evaded due to the cancelation effects in the $h\tilde{\chi}^0_1\tilde{\chi}^0_1$ coupling, while rather stringent constraints come from the PandaX-II (2016) spin-dependent (SD) scattering cross section limits, which can exclude the higgsino mass $|\mu|$ and the LSP mass $m_{\tilde{\chi}^0_1}$ up to about 230 GeV and 37 GeV, respectively. Furthermore, the surviving parameter space will be fully covered by the projected XENON1T experiment or the future trilepton searches at the HL-LHC.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Little hierarchies solve the little fine-tuning problem: a case study in supersymmetry with heavy guinos

    hep-ph 2019-08 conditional novelty 7.0 of 10

    A heavy gluino can push the physical stop mass above LHC bounds while the underlying stop mass parameter stays near the electroweak scale, solving the little fine-tuning problem when higher-order corrections are resummed.

  2. Current status and prospects of light bino-higgsino dark matter in natural SUSY

    hep-ph 2026-02 conditional novelty 4.0 of 10

    In natural SUSY with Δ_EW<30, light bino-higgsino neutralinos are always subdominant dark matter (f≤0.02), and HL-LHC can probe the surviving parameter space.

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