首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >A High-Granularity Timing Detector for the Phase-II upgrade of the ATLAS calorimeter system: detector concept description and first beam test results
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A High-Granularity Timing Detector for the Phase-II upgrade of the ATLAS calorimeter system: detector concept description and first beam test results

机译:用于ATLAS量热计系统的II期升级的高粒度定时检测器:探测器概念描述和第一梁测试结果

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摘要

The expected increase of the particle flux at the high luminosity phase of the LHC (HL-LHC) with instantaneous luminosities up to 7.5?10~(34) cm~(-2)s~(-1) will have a severe impact on the ATLAS detector performance. The pile-up is expected to increase on average to 200 interactions per bunch crossing. The reconstruction performance for electrons, photons as well as jets and transverse missing energy will be severely degraded in the end-cap and forward region. A High Granularity Timing Detector (HGTD) is proposed in front of the liquid Argon end-cap and forward calorimeters for pile-up mitigation. This device should cover the pseudo-rapidity range of 2.4 to about 4.0. Low Gain Avalanche Detectors (LGAD) technology has been chosen as it provides an internal gain good enough to reach large signal over noise ratio needed for excellent time resolution. The requirements and overall specifications of the High Granular Timing Detector at the HL-LHC will be presented as well as the conceptual design of its mechanics and electronics. Beam test results and measurements of irradiated LGAD silicon sensors, such as gain and timing resolution, will be shown.
机译:LHC(HL-LHC)的高亮度相的预期增加的粒子通量,其瞬时发光可达7.5?10〜(34)cm〜(-2)S〜(-1)将对此产生严重影响地图集检测器性能。预计堆积将平均增加到每束交叉的200个相互作用。电子,光子以及喷射和横向缺失能量的重建性能将在封端和前部区域中严重降低。在液体氩端盖和向前热计的前面提出了高粒度定时检测器(HGTD),用于堆积缓解。该设备应覆盖伪速度范围为2.4至约4.0。已经选择了低增益雪崩探测器(LGAD)技术,因为它提供了足够好的内部增益,以达到优异的时间分辨率所需的噪声比。将提出HL-LHC的高粒度定时检测器的要求和总规范以及其力学和电子的概念设计。将显示射线测试结果和辐照的LGAD硅传感器,例如增益和定时分辨率。

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