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Search for top squarks and dark matter particles in opposite-charge dilepton final states at √s=13 TeV

机译:在√s= 13 tev的反对德珀顿最终状态下搜索顶部划分和暗物质粒子

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摘要

A search for new physics is presented in final states with two oppositely charged leptons (electrons or muons), jets identified as originating from b quarks, and missing transverse momentum (p_T~(miss) ). The search uses proton-proton collision data at √s= 13 TeV amounting to 35.9 fb?1 of integrated luminosity collected using the CMS detector in 2016. Hypothetical signal events are efficiently separated from the dominant tt background with requirements on p_T~(miss) and transverse-mass variables. No significant deviation is observed from the expected background. Exclusion limits are set in the context of simplified supersymmetric models with pair-produced top squarks. For top squarks, decaying exclusively to a top quark and a neutralino, exclusion limits are placed at 95% confidence level on the mass of the lightest top squark up to 800 GeVand on the lightest neutralino up to 360 GeV. These results, combined with searches in the single-lepton and all-jet final states, raise the exclusion limits up to 1050 GeV for the lightest top squark and up to 500 GeV for the lightest neutralino. For top squarks undergoing a cascade decay through charginos and sleptons, the mass limits reach up to 1300 GeV for top squarks and up to 800 GeV for the lightest neutralino. The results are also interpreted in a simplified model with a dark matter (DM) particle coupled to the top quark through a scalar or pseudoscalar mediator. For light DM, mediator masses up to 100 (50) GeV are excluded for scalar (pseudoscalar) mediators. The result for the scalar mediator achieves some of the most stringent limits to date in this model.
机译:在具有两个相对电荷的leptons(电子或muONs)的最终状态下,在最终状态中呈现了新物理学,射门被识别为源自B夸克的喷射,缺失横向动量(P_T〜(Miss))。搜索在√s= 13 tev时使用质子 - 质子碰撞数据达35.9fb?1在2016年使用CMS检测器收集的集成发光度。假设信号事件与POST〜(Miss)的要求有效地与主导TT背景分开和横向质量变量。从预期的背景中没有观察到显着偏差。在具有对产生的顶缝的简化超对对称模型的上下文中设置排除限制。对于顶级划分,专门腐烂到顶部夸克和中性量,排除限值位于最轻的顶部尖端的质量上的95%的置信水平,最轻的中性高达360 GEV。这些结果与单勒斯顿和全喷气式最终状态的搜索相结合,将排斥限制高达1050 GEV,最轻的顶部划分,最高可用于最轻的中性的500 GEV。对于通过Chargino和Sleptons进行级联衰变的顶级划分,质量限制达到1300 GEV,最轻的中性最轻,最低为800 GEV。结果也在简化模型中解释为通过标量或伪介质介导的暗物质(DM)颗粒耦合到顶部夸张。对于Light DM,介体肿块最高可达100(50)个GEV被排除在标量(伪张数)调解器中。标量介质的结果达到了该模型中的一些最严格的限制。

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