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Identification of $au$ leptons and Higgs boson search in the $mu+au$ final state at the D0 experiment at the Tevatron

机译:在Tevatron的D0实验中鉴定tau轻子并在最终的mu + tau状态中搜索希格斯玻色子

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摘要

The gauge symmetry is the heart of our understanding of the electroweak interaction and describes all the current experimental results. However, the intrinsic incompatibility between the gauge invariance and the mass of particles leads to the introduction of a new particle, the Higgs boson, for which we have no experimental evidence as of today. This thesis describes the Higgs boson search in the mu+tau final state in 7.3/fb of protons-antiprotons collisions at sqrt{s} = 1.96 TeV collected by the D0 detector at the Tevatron. This analysis completes the golden channels (dimuons, electron-muon, dielectrons) exploiting the decay chain H-> WW ->lvlv, which is the main Higgs boson decay mode in the mass window accessible to the Tevatron. Since the final state includes a tau lepton, work was done to improve their identification among jets. An increase of 15% was achieved thanks to the the following : changing tuning parameters for the tau identification neural network, use of the kinematical dependence of the algorithm performances, incorporation of the tau lepton life time information and full study of the additionnal information coming from the central preshower measurements. Then, since the dominant background of the mu+tau Higgs boson search is W+jets (where one jet fakes a tau), a method was developed to obtain good modeling of this background, not provided by the default simulation. This method is based, among other things, on the charge correlation between the muon and the tau candidate which allows for calibration of this background in the data excluding the signal region. Finally, all the kinematic and/or topological differences between the signal and the background were exploited to optimize this search, reaching an (observed) expected sensitivity of 7.8 (6.6) times the Standard Model for mH = 165 GeV/c2. In addition, this result was also interpreted in a fourth fermion generation scenario. For the first time, this analysis is included in the D0 and Tevatron combinations, both presented at Moriond EW and EPS 2011.
机译:该规范对称性是我们的弱电相互作用的理解心脏和描述了目前所有的实验结果。然而,规范不变性和颗粒引线引入一个新粒子的质量之间的内在不相容,希格斯玻色子,对此我们没有实验证据今天的。本文描述了希格斯玻色子搜索在亩+ tau蛋白的最终状态在7.3 /的SQRT {S} = 1.96 TeV的通过在Tevatron实验的D0检测器收集的质子 - 反质子碰撞FB。此分析完成了金色的通道(dimuons,电子μ介子,dielectrons)利用衰变链H-> WW - >绿绿,这是主要的希格斯玻色子衰减模式中的访问Tevatron实验的质量窗口。由于最终状态包括头轻子,工作是为了提高飞机在他们的身份。 15%的同比增长达到多亏了以下内容:牛头识别神经网络改变调整参数,运用运动学的算法性能的依赖,的来自的其它附加信息,牛头轻子寿命的信息和充分的研究纳入中央preshower测量。然后,由于亩+ tau蛋白Higgs粒子搜索的主要背景是W +射流(其中一个喷射假货一个TAU),一种方法被开发来获得这样的背景,而不是由默认仿真提供的良好的建模。该方法是基于,除其他外,在μ介子和tau蛋白的候选,其允许此背景中不包括信号区中的数据的校准之间的电荷相关。最后,所有的信号和背景之间的运动和/或拓扑差异利用以该搜索优化,达到7.8(6.6)倍标准模型对于MH = 165电子伏特/ C2的(观察到的)预期灵敏度。此外,这一结果也解释在第四代费米子方案。对于第一次,这种分析包括在D0和Tevatron实验组合,在Moriond EW既呈现和EPS 2011。

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    Romain Madar;

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  • 年度 2011
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