首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >Beam test measurements of Low Gain Avalanche Detector single pads and arrays for the ATLAS High Granularity Timing Detector
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Beam test measurements of Low Gain Avalanche Detector single pads and arrays for the ATLAS High Granularity Timing Detector

机译:低增益雪崩检测器单焊盘和阵列的光束测试测量为地图集高粒度定时检测器

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摘要

For the high luminosity upgrade of theLHCatCERN,ATLASis considering the addition of a High Granularity Timing Detector (HGTD) in front of the end cap and forward calorimeters at |z| = 3.5 m and covering the region 2.4 < |η| < 4 to help reducing the effect of pile-up. The chosen sensors are arrays of 50 μmthin Low Gain Avalanche Detectors (LGAD). This paper presents results on single LGAD sensors with a surface area of 1.3×1.3mm~2 and arrays with 2×2 pads with a surface area of 2×2mm~2 or 3×3mm~2 each and different implant doses of the p~+ multiplication layer. They are obtained from data collected during a beam test campaign in autumn 2016 with a pion beam of 120 GeV energy at the CERN SPS. In addition to several quantities measured inclusively for each pad, the gain, efficiency and time resolution have been estimated as a function of the position of the incident particle inside the pad by using a beam telescope with a position resolution of few μm. Different methods to measure the time resolution are compared, yielding consistent results. The sensors with a surface area of 1.3×1.3mm~2 have a time resolution of about 40 ps for a gain of 20 and of about 27 ps for a gain of 50 and fulfil the HGTD requirements. Larger sensors have, as expected, a degraded time resolution. All sensors show very good efficiency and time resolution uniformity.
机译:考虑到在端盖前面的高粒度定时检测器(HGTD)和在| Z | Z | = 3.5米并覆盖区域2.4 <|η| <4帮助降低堆积的效果。所选择的传感器是50μmtHIN低增益雪崩探测器(LGAD)的阵列。本文提出了一个表面积为1.3×1.3mm〜2和2×2垫的阵列的结果,具有2×2mm〜2或3×3mm〜2的阵列,每个和不同植入剂的p 〜+乘法层。它们是从2016年秋季的光束测试活动期间收集的数据获得,CERN SPS的120个GEV能量的磁线束。除了在每个焊盘中包含测量的几个量之外,还通过使用梁望远镜,据估计增益,效率和时间分辨率作为入射粒子内的入射粒子的位置通过使用较小μm的位置分辨率。比较了测量时间分辨率的不同方法,产生一致的结果。表面积为1.3×1.3mm〜2的传感器具有约40 ps的时间分辨率,其增益为20,约27 ps为50,并满足HGTD要求。更大的传感器如预期的那样,具有劣化的时间分辨率。所有传感器都显示出非常好的效率和时间分辨率均匀性。

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  • 作者单位

    LAL Univ. Paris-Sud CNRS/IN2P3 Université Paris-Saclay Orsay France;

    University of Iowa Iowa City IA U.S.A.;

    Laboratoire de Physique Nucléaire et de Hautes Energies UPMC and Université Paris-Diderot and CNRS/IN2P3 Paris France;

    Laboratoire de Physique Nucléaire et de Hautes Energies UPMC and Université Paris-Diderot and CNRS/IN2P3 Paris France;

    Centro Nacional de Microelectronica (CNM-IMB-CSIC) Campus UAB 08193 Bellaterra (Barcelona) Spain;

    Institut de Física d'Altes Energies (IFAE) The Barcelona Institute of Science and Technology Barcelona Spain;

    LAL Univ. Paris-Sud CNRS/IN2P3 Université Paris-Saclay Orsay France;

    Centro Nacional de Microelectronica (CNM-IMB-CSIC) Campus UAB 08193 Bellaterra (Barcelona) Spain;

    Santa Cruz Institute for Particle Physics University of California Santa Cruz Santa Cruz CA U.S.A.;

    Santa Cruz Institute for Particle Physics University of California Santa Cruz Santa Cruz CA U.S.A.;

    Institut de Física d'Altes Energies (IFAE) The Barcelona Institute of Science and Technology Barcelona Spain;

    Santa Cruz Institute for Particle Physics University of California Santa Cruz Santa Cruz CA U.S.A.;

    Institut de Física d'Altes Energies (IFAE) The Barcelona Institute of Science and Technology Barcelona Spain;

    Santa Cruz Institute for Particle Physics University of California Santa Cruz Santa Cruz CA U.S.A.;

    CERN Geneva Switzerland;

    CERN Geneva Switzerland;

    Centro Nacional de Microelectronica (CNM-IMB-CSIC) Campus UAB 08193 Bellaterra (Barcelona) Spain;

    Physics Department Royal Institute of Technology Stockholm Sweden;

    Santa Cruz Institute for Particle Physics University of California Santa Cruz Santa Cruz CA U.S.A.;

    Laboratoire de Physique Nucléaire et de Hautes Energies UPMC and Université Paris-Diderot and CNRS/IN2P3 Paris France;

    Institut de Física d'Altes Energies (IFAE) The Barcelona Institute of Science and Technology Barcelona Spain;

    Physics Department Brookhaven National Laboratory Upton NY U.S.A.;

    CERN Geneva Switzerland;

    Santa Cruz Institute for Particle Physics University of California Santa Cruz Santa Cruz CA U.S.A.;

    LAL Univ. Paris-Sud CNRS/IN2P3 Université Paris-Saclay Orsay France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 仪器、仪表;
  • 关键词

    Si microstrip and pad detectors; Solid state detectors; Timing detectors;

    机译:SI微带和垫探测器;固态探测器;定时探测器;

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