论文标题

Susy低质量LSP的状态

Status of low mass LSP in SUSY

论文作者

Barman, Rahool Kumar, Belanger, Genevieve, Godbole, Rohini M.

论文摘要

在本文中,我们审查了该案例($ <m_ {h_ {125}}/2 $)中性诺和sneutrino是SuperSymmemetry(SUSY)中可行的暗物质(DM)候选者。为此,我们简要简要地概括了与DM相关的三个问题,这些问题影响了讨论:DM Relic密度的计算,在直接和间接实验中检测DM以及在山口处的创建 /检测。在Susy的情况下,Higgs和Susy搜索对围栏的结果也对DM质量和耦合产生了影响。鉴于所有这些来源的约束,在受约束的MSSM:CMSSM上排除了光中性诺的可能性。 PMSSM在高尺度上与仪表块无关,在热DM的情况下也受到了很大的限制,在张力下,在不久的将来进行了非常严厉的测试(DD)实验以及LHC分析。但是,在具有改良宇宙学的PMSSM中,因此在非热DM或NMSSM中,轻型中性诺更容易容纳。轻度RH Sneutrino仍然是一个可行的DM候选者,尽管它需要使用其他Singlet Neutrino超级场所扩展MSSM。确实可以在即将到来的Susy-Electroweakino中共同测试所有这些可能性,并在HL/HE Luminosity LHC上进行HIGGS搜索,即直接检测(DD)的即将进行的实验(DD)和DM的间接检测,以及在计划下的高精度电子positron Collers。

In this article we review the case for a light ($< m_{h_{125}}/2$) neutralino and sneutrino being a viable Dark Matter (DM) candidate in Supersymmetry(SUSY). To that end we recapitulate, very briefly, three issues related to the DM which impact the discussions : calculation of DM relic density, detection of the DM in Direct and Indirect experiments and creation /detection at the Colliders. In case of SUSY, the results from Higgs and SUSY searches at the colliders also have implications for the DM mass and couplings. In view of the constraints coming from all these sources, the possibility of a light neutralino is all but ruled out for the constrained MSSM : cMSSM. The pMSSM, where the gaugino masses are not related at high scale, is also quite constrained and under tension in case of thermal DM and will be put to very stern test in the near future in Direct Detection (DD) experiments as well as by the LHC analyses. However in the pMSSM with modified cosmology and hence non-thermal DM or in the NMSSM, a light neutralino is much more easily accommodated. A light RH sneutrino is also still a viable DM candidate although it requires extending the MSSM with additional singlet neutrino superfields. All of these possibilities can be indeed tested jointly in the upcoming SUSY-electroweakino and Higgs searches at the HL/HE luminosity LHC, the upcoming experiments for the Direct Detection (DD) and indirect detection for the DM as well as the high precision electron-positron colliders under planning.

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