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A new method to distinguish hadronically decaying boosted Z bosons from W bosons using the ATLAS detector

机译:使用ATLAS探测器区分强子衰变的增强Z玻色子和W玻色子的新方法

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摘要

The distribution of particles inside hadronic jets produced in the decay of boosted W and Z bosons can be used to discriminate such jets from the continuum background. Given that a jet has been identified as likely resulting from the hadronic decay of a boosted W or Z boson, this paper presents a technique for further differentiating Z bosons from W bosons. The variables used are jet mass, jet charge, and a b-tagging discriminant. A likelihood tagger is constructed from these variables and tested in the simulation of W → WZ for bosons in the transverse momentum range 200 GeV   pT   400 GeV in s=8 TeV pp collisions with the ATLAS detector at the LHC. For Z-boson tagging efficiencies of ϵZ = 90, 50, and 10 %, one can achieve W+-boson tagging rejection factors (1/ϵW+) of 1.7, 8.3 and 1000, respectively. It is not possible to measure these efficiencies in the data due to the lack of a pure sample of high pT, hadronically decaying Z bosons. However, the modelling of the tagger inputs for boosted W bosons is studied in data using a tt¯-enriched sample of events in 20.3 fb-1 of data at s=8 TeV. The inputs are well modelled within uncertainties, which builds confidence in the expected tagger performance.
机译:在增强的W和Z玻色子的衰变中产生的强子束中的粒子分布可用于从连续背景中区分出此类束。鉴于已经确定喷射可能是由增强的W或Z玻色子的强子衰变引起的,本文提出了进一步区分Z玻色子和W玻色子的技术。使用的变量是射流质量,射流电荷和b标记判别式。从这些变量构建一个似然标记器,并在W →WZ的模拟中对横向数学动量范围为200 GeV T <400 GeV的玻色子进行了测试,在 s = 8 TeV pp与LHC处的ATLAS检测器碰撞。对于-Z = 90%,50%和10%的Z玻色子标记效率,可以达到W + -玻色子标记拒绝因子(1 / ϵ W < / em> + )分别为1.7、8.3和1000。由于缺乏高强 p T强子衰变的 Z 玻色子的纯样品,因此无法测量数据中的这些效率。但是,使用 W 玻色子的标记输入的建模。 “ M18” overflow =“ scroll”> t t -1 数据中的事件丰富样本中的“ false“>” 事件=“ http://www.w3.org/1998/Math/MathML” id =“ M22”溢出=“ scroll”> s = 8 TeV。在不确定性内对输入进行了很好的建模,从而建立了对预期标记器性能的信心。

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