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Radiation Hard Silicon Strips Detectors For the SLHC

机译:SLHC的辐射硬硅条探测器

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While the Large Hadron Collider (LHC) is getting ready to start taking data in 2009, scenarios for a machine upgrade to achieve a much higher luminosity are being developed. In the current planning, it is foreseen to increase the luminosity of the LHC at CERN around 2018. As radiation damage scales with integrated luminosity, the particle physics experiments will need to be equipped with a new generation of radiation hard detectors. This article reports on the status of the R&D projects on radiation hard silicon strips detectors for particle physics, linked to the Large Hadron Collider Upgrade, superluminous-LHC (sLHC) of the ATLAS microstrip detector. The primary focus of this report is on measuring the radiation hardness of the silicon materials and the detectors under study. This involves designing silicon detectors, irradiating them to the sLHC radiation levels and studying their performance as particle detectors. The most promising silicon detector for the different radiation levels in the different regions of the ATLAS microstrip detector will be presented. Important challenges related to engineering layout, powering, cooling and reading out a very large strip detector are presented. Ideas on possible schemes for the layout and support mechanics will be shown.
机译:虽然大型强子撞机(LHC)在2009年正准备开始采取数据,但正在开发机器升级的场景,以实现更高的亮度。在目前的规划中,预计将在2018年左右提高LHC的发光。由于辐射损伤具有集成光度的尺度,粒子物理实验需要配备新一代的辐射硬探测器。本文报告了辐射硬硅条检测器的研发项目的状态,用于粒子物理学,连接到ATLAS微带探测器的大型Holron Collifer升级,Superluminous-LHC(SLHC)。本报告的主要重点是测量硅材料的辐射硬度和正在研究的检测器。这涉及设计硅探测器,照射它们到SLHC辐射水平并将其性能作为粒子检测器进行研究。将呈现用于图案微带检测器的不同区域的不同辐射水平的最有希望的硅探测器。提出了与工程布局,电力,冷却和读出非常大的带探测器相关的重要挑战。将显示关于布局和支持力学可能计划的想法。

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