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A measurement of the calorimeter response to single hadrons and determination of the jet energy scale uncertainty using LHC Run-1 pp-collision data with the ATLAS detector

机译:使用LHC Run-1 pp碰撞数据和ATLAS检测器测量量热仪对单强子的响应并确定射流能量规模的不确定性

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摘要

A measurement of the calorimeter response to isolated charged hadrons in the ATLAS detector at the LHC is presented. This measurement is performed with 3.2 nb-1 of proton–proton collision data at s=7  TeV from 2010 and 0.1 nb-1 of data at s=8  TeV from 2012. A number of aspects of the calorimeter response to isolated hadrons are explored. After accounting for energy deposited by neutral particles, there is a 5% discrepancy in the modelling, using various sets of Geant4 hadronic physics models, of the calorimeter response to isolated charged hadrons in the central calorimeter region. The description of the response to anti-protons at low momenta is found to be improved with respect to previous analyses. The electromagnetic and hadronic calorimeters are also examined separately, and the detector simulation is found to describe the response in the hadronic calorimeter well. The jet energy scale uncertainty and correlations in scale between jets of different momenta and pseudorapidity are derived based on these studies. The uncertainty is 2–5% for jets with transverse momenta above 2  TeV, where this method provides the jet energy scale uncertainty for ATLAS.
机译:给出了LHC处ATLAS检测器中量热计对孤立带电强子响应的测量结果。此测量是通过 -1 进行的“溢出=” scroll“> s = 7 TeV从2010年开始,并且 -1 从“ id =” M10“溢出=”滚动“ > s = 8 TeV,始于2012年。探索量热计对孤立强子响应的各个方面。在考虑了中性粒子沉积的能量后,使用Geant4强子物理学模型的不同集合,在量热仪对中心量热仪区域中的孤立带电强子的响应中,建模存在5%的差异。发现相对于先前的分析,对在低动量下对反质子的响应的描述得到了改进。还分别检查了电磁热量计和强子热量计,并发现了检测器模拟来描述强子热量计井中的响应。基于这些研究,得出了不同动量和伪快速度的射流之间的射流能量尺度不确定性和尺度相关性。对于横向动量高于2 TeV的喷气机,不确定度为2%至5%,其中此方法为ATLAS提供了喷气能级不确定度。

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