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Performance of the ATLAS Transition Radiation Tracker with Cosmic Rays and First High Energy Collisions at the LHC

机译:地图集过渡辐射跟踪器的性能与LHC的宇宙射线和第一高能量碰撞

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The ATLAS Transition Radiation Tracker (TRT) is the outermost of the three sub-systems of the ATLAS Inner Detector at the Large Hadron Collider (LHC) at CERN. It consists of close to 300000 thin-walled drift tubes (straws) providing on average 30 two-dimensional space points with 130 μm resolution for charged particle tracks with |η| < 2 and PT > 0.5 GeV. Along with continuous tracking, it provides particle identification through the detection of transition radiation x-ray photons generated by high velocity particles in the many polymer fibers or films that fill the spaces between the straws. The custom-designed radiation-hard front-end electronics implements two thresholds to discriminate the signals: a low threshold (~ 300 eV) for registering the passage of charged particles, and a high threshold (~ 6 keV) to flag the absorption of transition radiation x-rays. The TRT was successfully commissioned with data collected from several million cosmic ray muons. A special Fast-OR signal from the front-end ASICs was utilized to build a level 1 trigger for cosmic rays traversing the ATLAS Inner Detector which allowed other ATLAS sub-detectors and level 1 triggers to align their timing. The very good timing properties of the TRT detector helped discriminate proton-proton collisions from beam background. This proceeding will describe the operational experiences gained with the ATLAS TRT detector during the commissioning with cosmic rays, and will highlight the excellent performance for charged particle tracking and electron identification based on transition radiation obtained from the first proton-proton collision data at 900 GeV and 7 TeV center-of-mass energy.
机译:地图集过渡辐射跟踪器(TRT)是CERN的大型HADRON撞机(LHC)的ATLAS内检测器的三个子系统的最外面。它包括接近300000薄壁漂移管(吸管),提供平均30个二维空间点,具有130μm分辨率,用于带电荷的粒子轨道|η| <2和pt> 0.5 gev。随着连续跟踪,它通过检测在填充吸管之间的空间的许多聚合物纤维或薄膜中的高速粒子产生的高速粒子产生的过渡辐射X射线光子来提供粒子识别。定制的辐射硬端端端电子器件实现了两个阈值以区分信号:低阈值(〜300eV),用于注册带电粒子的通道,以及高阈值(〜6 kev)以标记过渡的吸收辐射X射线。该TRT已成功委托,数据从数百万宇宙射线μONs收集的数据。来自前端ASIC的特殊快速或信号用于构建宇宙射线的级别1触发器,遍历ATLAS内检测器,该域允许其他地图集子检测器和级别1触发以对准其定时。 TRT检测器的非常好的时序特性有助于区分梁背景的质子 - 质子碰撞。此程序将描述与ATLAS TRT检测器取得的运行经验与宇宙射线的调试期间,并基于在900电子伏特,并从第一质子 - 质子碰撞数据得到的过渡辐射将突出用于带电粒子跟踪和电子识别的优良性能7 TEV群众能源。

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