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Performance of the ATLAS liquid argon calorimeter with cosmic muons and single LHC beam data

机译:ATLAS液态氩量热仪具有宇宙μ子和单个LHC束数据的性能

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The Liquid Argon (LAr) calorimeter is a key detector in the ATLAS (A Toroidal LHC Apparatus) experiment at the Large Hadron Collider (LHC), designed to provide precision measurements of electrons, photons, jets and missing transverse energy. Cosmic muon data has been recorded by the LAr calorimeter at various stages of commissioning, with the first single LHC beam data being recorded in September 2008. We present here the LAr calorimeter performance studies based on cosmic muons and LHC beam data. In 2008, ~99% of the LAr readout channels were fully operational. The high energy deposits in the calorimeter readout cells have been used to validate the signal shape reconstruction from calibration predictions at a level better than ~2%. The measured timing alignment agrees with expectations at the 2 ns level. The non-uniformity of the barrel electromagnetic (EM) calorimeter has been estimated less than 2% thanks to cosmic muons.%Centre de Physique des Panicules de Marseille, Aix-Marseille Universite, CNRS/1N2P3, Marseille, France;
机译:液态氩(LAr)量热仪是大型强子对撞机(LHC)在ATLAS(环形LHC仪器)实验中的关键检测器,旨在提供电子,光子,射流和横向能量缺失的精确测量。 LAr量热仪已在调试的各个阶段记录了宇宙μ子数据,2008年9月记录了第一个单一的LHC束数据。在这里,我们介绍了基于宇宙μ子和LHC束数据的LAr量热器性能研究。在2008年,约99%的LAr读取通道已完全投入使用。量热计读出单元中的高能量沉积已被用于验证来自校准预测的信号形状重构,其水平优于〜2%。测得的时序对齐与2 ns的期望值一致。得益于宇宙间的介子,桶形电磁(EM)量热仪的不均匀性估计不到2%。法国马赛Aix-Marseille大学马萨诸塞州中央物理学中心,CNRS / 1N2P3;

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