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首页> 外文期刊>Journal of High Energy Physics >Electroweak precision measurements in supersymmetric models with a U(1)n Rn lepton number
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Electroweak precision measurements in supersymmetric models with a U(1)n Rn lepton number

机译:具有U(1)n Rn轻子数的超对称模型中的电弱精度测量

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As experimental constraints on the parameter space of the MSSM and close variations thereof become stronger, the motivation to explore supersymmetric models that challenge some of the standard assumptions of the MSSM also become stronger. For example, models where the gauginos are Dirac instead of Majorana have recently received more attention. Beside allowing for a supersoft SUSY breaking mechanism where the gauginos only provide finite threshold corrections to scalar masses, the cross section for the production of a squark pairs is reduced. In addition, Dirac gauginos can be used to build models that possess a U(1)R symmetry. This symmetry can then be identified with a lepton number, leading to models that are quite different from conventional scenarios. The sneutrinos in these models can acquire a vev and give mass to the leptons and the down-type squark. The phenomenology is novel, combining signatures that are typical of R-parity violating scenarios with signatures arising from leptoquarks. Correspondingly the constraints from electroweak precision data are also different. In these models, one of the leptons mixes with gauginos and superpotential Yukawa couplings can contribute to EWPM at tree level. In addition, lepton universality is broken. In this paper we adapt the operators analysis of Han and Skiba [1] to include the relevant violation of lepton universality, and do a global fit of the model to electroweak precision data, including all relevant tree-level and loop-level effects. We obtain bounds on the vev of the sneutrino and on the superpotential couplings of the model
机译:随着对MSSM参数空间及其紧密变化的实验约束变得越来越强,探索挑战MSSM某些标准假设的超对称模型的动机也越来越强。例如,戴高乐人是狄拉克(Dirac)而不是马约拉纳(Majorana)的模型最近受到了更多关注。除了允许超软SUSY断裂机制(其中高牛牛只提供对标量质量的有限阈值校正)之外,还减小了生产成对的夸克的横截面。此外,Dirac gauginos可用于构建具有U(1)R对称性的模型。然后可以用轻子数来识别这种对称性,从而导致模型与传统方案大不相同。这些模型中的中微子可以获取vev并赋予轻子和下沉型夸克质量。现象学是新颖的,结合了典型的违反R奇偶校验方案的签名和来自quar子夸克的签名。相应地,来自电弱精度数据的约束也不同。在这些模型中,一种轻质蛋白与高庚子的混合物和超潜能的Yukawa联轴器可在树水平上促进EWPM。另外,轻子的普遍性被打破。在本文中,我们将Han和Skiba [1]的算子分析进行了调整,以包括对轻子普适性的相关违反,并对模型进行全局拟合以拟合电弱精度数据,包括所有相关的树级和循环级效应。我们获得了中微子的vev和模型的超电势耦合的界

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