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Beyond the CMSSM without an accelerator: proton decay and direct dark matter detection

机译:不带加速器的CMSSM之外:质子衰减和直接暗物质检测

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摘要

We consider two potential non-accelerator signatures of generalizations of the well-studied constrained minimal supersymmetric standard model (CMSSM). In one generalization, the universality constraints on soft supersymmetry-breaking parameters are applied at some input scale Minbelow the grand unification (GUT) scale MGUT, a scenario referred to as ‘sub-GUT’. The other generalization we consider is to retain GUT-scale universality for the squark and slepton masses, but to relax universality for the soft supersymmetry-breaking contributions to the masses of the Higgs doublets. As with other CMSSM-like models, the measured Higgs mass requires supersymmetric particle masses near or beyond the TeV scale. Because of these rather heavy sparticle masses, the embedding of these CMSSM-like models in a minimal SU(5) model of grand unification can yield a proton lifetime consistent with current experimental limits, and may be accessible in existing and future proton decay experiments. Another possible signature of these CMSSM-like models is direct detection of supersymmetric dark matter. The direct dark matter scattering rate is typically below the reach of the LUX-ZEPLIN (LZ) experiment if Min is close to MGUT, but it may lie within its reach if Min ≲ 1011 GeV. Likewise, generalizing the CMSSM to allow non-universal supersymmetry-breaking contributions to the Higgs offers extensive possibilities for models within reach of the LZ experiment that have long proton lifetimes.
机译:我们考虑了经过严格研究的最小超对称标准模型(CMSSM)的推广的两个潜在的非加速剂特征。在一种概括中,在超统一(GUT)尺度MGUT之下的某个输入尺度上应用了对软超对称破坏参数的普遍性约束,这种情况称为“ sub-GUT”。我们考虑的另一种概括是保留squark和slepton质量的GUT尺度通用性,但放宽对打破希格斯二重态质量的超对称性贡献的通用性。与其他类似CMSSM的模型一样,测得的希格斯质量需要接近或超过TeV标度的超对称粒子质量。由于这些相当重的粒子质量,将这些类似CMSSM的模型嵌入到统一的最小SU(5)模型中可以产生与当前实验极限一致的质子寿命,并且可以在现有和将来的质子衰减实验中访问。这些类似CMSSM模型的另一个可能的特征是直接检测超对称暗物质。如果Min接近MGUT,则直接暗物质散射率通常低于LUX-ZEPLIN(LZ)实验的范围,但如果Min≤10 11 GeV,则直接暗物质散射率可能在其范围之内。同样,对CMSSM进行泛化以允许对希格斯谱系进行非通用的打破超对称性的贡献,为质子寿命长的LZ实验所能达到的模型提供了广泛的可能性。

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