TIPP 2011-Technology and Instrumentation for Particle Physics 2011 Silicon Strip Detectors for the ATLAS HL-LHC Upgrade

TIPP 2011-Technology and Instrumentation for Particle Physics 2011 Silicon Strip Detectors for the ATLAS HL-LHC Upgrade
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TIPP 2011-粒子物理技术和仪器 2011 用于 ATLAS HL-LHC 升级的硅条探测器

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发表时间:
2013
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通讯作者:
A. Affolder
A. Affolder
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作者:
A. Affolder

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为了进一步扩大大型强子对撞机(LHC)实验的终极物理范围,计划在2014年(0期)、2017年(1期)和2022年(2期)进行一系列加速器和实验升级。第二阶段的机器升级,被称为高亮度大型强子对撞机(HL-LHC),预计将把瞬时亮度提高10倍,总积分亮度为3000fb−1。ATLAS实验计划建造一种新的全硅跟踪器,用于HL-LHC运行,可以应对预测的高粒子率和强辐射剂量。本文总结了ATLAS HL-LHC升级的硅微带段的计划和最新进展。给出了小型(10×10mm2)和全尺寸(97.5×97.5mm2)平面n-in-p FZ硅传感器的测量结果。还描述了具有高度集成的冷却和机械支撑结构的不同模块概念的第一个原型。C©2011 CERN,用于ATLAS协作。爱思唯尔出版公司出版。由2011年TIPP组委会负责的遴选和/或同行审查。
To further extend the ultimate physics reach of the experiments at the Large Hadron Collider (LHC), a series of accelerator and experimental upgrades are planned in 2014 (phase 0), 2017 (phase 1) and 2022 (phase 2). The phase 2 machine upgrade, called the High Luminosity-LHC (HL-LHC), is foreseen to increase the instantaneous luminosity by a factor ten with a total integrated luminosity of 3000 fb−1. The ATLAS experiment plans to build a new all-silicon tracker for HL-LHC operation which can cope with the predicted high particle rates and intense radiation doses. This article summarizes the plans and recent progress prototyping the silicon micro-strip section of the ATLAS HL-LHC upgrade. Results from measurements of miniature (10 × 10 mm2) and full-size (97.5 × 97.5 mm2) planar n-in-p FZ silicon sensors are shown. The first prototypes of different module concepts with highly integrated cooling and mechanical support structures are also described. c © 2011 CERN, for the benefit of ATLAS Collaboration. Published by Elsevier BV. Selection and/or peer-review under responsibility of the organizing committee for TIPP 2011.