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Search for top squark pair production in compressed-mass-spectrum scenarios in proton–proton collisions at s = 8 ?TeV using the α T variable

机译: s = 8 ?TeV 使用α T 变量

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An inclusive search is performed for supersymmetry in final states containing jets and an apparent imbalance in transverse momentum, p → T miss , due to the production of unobserved weakly interacting particles in pp collisions at a centre-of-mass energy of 8 TeV. The data, recorded with the CMS detector at the CERN LHC, correspond to an integrated luminosity of 18.5 fb ?1 . The dimensionless kinematic variable α T is used to discriminate between events with genuine p → T miss associated with unobserved particles and spurious values of p → T miss arising from jet energy mismeasurements. No excess of event yields above the expected standard model backgrounds is observed. The results are interpreted in terms of constraints on the parameter space of several simplified models of supersymmetry that assume the pair production of top squarks. The search provides sensitivity to a broad range of top squark ( t ? ) decay modes, including the two-body decay t ? → c χ ? 1 0 , where c is a charm quark and χ ? 1 0 is the lightest neutralino, as well as the four-body decay t ? → b f f ˉ ′ χ ? 1 0 , where b is a bottom quark and f and f ˉ ′ are fermions produced in the decay of an intermediate off-shell W boson. These modes dominate in scenarios in which the top squark and lightest neutralino are nearly degenerate in mass. For these modes, top squarks with masses as large as 260 and 225 GeV are excluded, respectively, for the two- and four-body decays.
机译:对包含射流的最终状态中的超对称性和横向动量p→T miss的明显失衡进行了包容性搜索,这是由于在质子中心能量为8 TeV的pp碰撞中产生了未观察到的弱相互作用粒子。用CERN LHC的CMS检测器记录的数据对应于18.5 fb?1的综合光度。无量纲运动变量αT用于区分与未观察到的粒子相关的真正p→T miss的事件与由射流能量测量错误引起的p→T miss的虚假值。没有观察到超出预期标准模型背景的过多事件产生。根据对几个简化的超对称模型的参数空间的约束来解释结果,这些模型假设成对产生了顶级夸克。该搜索提供了对大范围顶级quar(t?)衰减模式的敏感性,包括两体衰减t? →cχ? 1 0,其中c是一个夸克,χ? 1 0是最轻的中性点,也是四体衰变t? →b f fˉ'χ? 1 0,其中b是底部夸克,f和f′'是中间壳外玻色子的衰变中产生的费米子。这些模式在顶排和最轻的中性点质量几乎退化的场景中占主导地位。对于这些模式,对于二体和四体衰变,分别排除质量分别为260 GeV和225 GeV的顶。

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