A High Granularity Timing Detector for the ATLAS Phase II Upgrade

Afonso Soares Canas Ferreira
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引用次数: 14

Abstract

The increase of the particle flux (pile-up) at the HL-LHC with instantaneous luminosities up to 𝐿 ≃ 7 . 5 × 10 34 cm − 1 s − 2 will have a severe impact on the ATLAS detector reconstruction and trigger performance. The end-cap and forward region where the liquid Argon calorimeter has coarser granularity and the inner tracker has poorer momentum resolution will be particularly affected. A High Granularity Timing Detector (HGTD) will be installed in front of the LAr end-cap calorimeters for pile-up mitigation and luminosity measurement. The HGTD is a novel detector introduced to assist the new all-silicon Inner Tracker (ITk) in the pseudo-rapidity range from 2.4 to 4.0, adding the capability to measure charged-particle trajectories in time as well as space. Two silicon-sensor double-sided layers will provide precision timing information for minimum-ionising particles with a resolution as good as 30 ps per track to help disentangle tracks from different vertices in the same bunch crossing. Readout cells have a size of 1.3 mm × 1.3 mm, leading to a highly granular detector with 3.7 million channels. Low Gain Avalanche Detectors (LGAD) technology has been chosen as it provides enough gain to reach the large signal over noise ratio needed. The requirements and overall specifications of the HGTD will be presented as well as the technical design and the project status. The on-going R&D effort carried out to study the sensors, the readout ASIC, and the other components, supported by laboratory and test beam results, will also be presented.
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用于ATLAS第二阶段升级的高粒度定时检测器
瞬时发光度高达𝐿的HL-LHC粒子通量(堆积)增加。5 × 10 34 cm−1 s−2将严重影响ATLAS探测器的重建和触发性能。液氩量热计粒度较粗、内部跟踪器动量分辨率较差的端盖和前向区域受到的影响尤为严重。高粒度定时探测器(HGTD)将安装在LAr端盖量热计前面,用于减少堆积和光度测量。HGTD是一种新型探测器,用于辅助新的全硅内跟踪器(ITk)在2.4到4.0的伪快度范围内,增加了在时间和空间上测量带电粒子轨迹的能力。两个硅传感器双面层将为最小电离粒子提供精确的定时信息,每个轨道的分辨率高达30 ps,以帮助在同一束交叉中从不同顶点解开轨道。读出单元的尺寸为1.3 mm × 1.3 mm,导致具有370万个通道的高颗粒检测器。低增益雪崩探测器(LGAD)技术已被选择,因为它提供足够的增益,以达到所需的大信噪比。介绍高压输水系统的要求和整体规格,以及技术设计和工程进度。还将介绍正在进行的研发工作,以研究传感器,读出ASIC和其他组件,并由实验室和测试光束结果支持。
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