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Performance of algorithms that reconstruct missing transverse momentum in ... formula ...= 8 TeV proton–proton collisions in the ATLAS detector

机译:在...公式... = 8 TeV质子-质子碰撞中重建缺失横向动量的算法的性能

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摘要

The reconstruction and calibration algorithms used to calculate missing transverse momentum (ETmiss ) with the ATLAS detector exploit energy deposits in the calorimeter and tracks reconstructed in the inner detector as well as the muon spectrometer. Various strategies are used to suppress effects arising from additional proton–proton interactions, called pileup, concurrent with the hard-scatter processes. Tracking information is used to distinguish contributions from the pileup interactions using their vertex separation along the beam axis. The performance of the ETmiss reconstruction algorithms, especially with respect to the amount of pileup, is evaluated using data collected in proton–proton collisions at a centre-of-mass energy of 8 TeV during 2012, and results are shown for a data sample corresponding to an integrated luminosity of 20.3 fb-1. The simulation and modelling of ETmiss  in events containing a Z boson decaying to two charged leptons (electrons or muons) or a W boson decaying to a charged lepton and a neutrino are compared to data. The acceptance for different event topologies, with and without high transverse momentum neutrinos, is shown for a range of threshold criteria for ETmiss , and estimates of the systematic uncertainties in the ETmiss  measurements are presented.
机译:用于计算缺少的横向动量的重构和校准算法(<数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ M4”溢出=“ scroll”> <使用ATLAS探测器的mi> E T miss )利用热量计中的能量沉积和轨道在内部探测器以及μ子光谱仪中重建。采取了各种策略来抑制由于附加的质子-质子相互作用(称为堆积)以及硬散射过程而产生的影响。跟踪信息用于通过沿射线轴的顶点分离来区分堆积交互作用中的作用。 E <使用质子收集的数据评估mrow> T miss 重建算法,尤其是关于堆积量的重建算法,质子在2012年以8 TeV的质心能量碰撞,结果显示的数据样本的综合光度为20.3 fb -1 E 的仿真和建模 T miss ,其中包含Z玻色子衰减到两个带电轻子(电子或μ子)或W的事件将玻色子衰变成带电的轻子和中微子与数据进行比较。对于 E T miss ,以及 E中的系统不确定性的估计提出了 T miss 的测量方法。

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