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Constraints on supersymmetry from LHC data on SUSY searches and Higgs bosons combined with cosmology and direct dark matter searches

机译:SUSY搜索和希格斯玻色子结合宇宙学和直接暗物质搜索的LHC数据的超对称性约束

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摘要

The ATLAS and CMS experiments did not find evidence for Supersymmetry using close to 5/fb of published LHC data at a center-of-mass energy of 7 TeV. We combine these LHC data with data on B0 s →μ+μ? (LHCb experiment), the relic density (WMAP and other cosmological data) and upper limits on the dark matter scattering cross sections on nuclei (XENON100 data). The excluded regions in the constrained Minimal Supersymmetric SM (CMSSM) lead to gluinos excluded below 1270 GeV and dark matter candidates below 220 GeV for values of the scalar masses (m0) below 1500 GeV. For large m0 values the limits of the gluinos and the dark matter candidate are reduced to 970 GeV and 130 GeV, respectively. If a Higgs mass of 125 GeV is imposed in the fit, the preferred SUSY region is above this excluded region, but the size of the preferred region is strongly dependent on the assumed theoretical error.
机译:在质量中心能量为7 TeV时,使用已发表的LHC数据的接近5 / fb,ATLAS和CMS实验没有找到超对称性的证据。我们将这些LHC数据与B0 s→μ+μ? (LHCb实验),文物密度(WMAP和其他宇宙学数据)以及核上暗物质散射截面的上限(XENON100数据)。对于标量质量(m0)低于1500 GeV的值,受约束的最小超对称SM(CMSSM)中的排除区域会导致胶合蛋白被排除在1270 GeV以下,而暗物质候选物则在220 GeV以下。对于较大的m0值,胶凝剂和暗物质候选物的极限分别降低到970 GeV和130 GeV。如果在拟合中施加了125 GeV的希格斯质量,则首选SUSY区域将位于该排除区域之上,但首选区域的大小在很大程度上取决于假设的理论误差。

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