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Large-area hexagonal silicon detectors for the CMS High Granularity Calorimeter

机译:CMS高粒度量热计的大面积六边形硅探测器

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摘要

During the so-called Phase-2 Upgrade, the CMS experiment at CERN will undergo significant improvements to cope with the 10-fold luminosity increase of the High Luminosity LHC (HL-LHC) era. Especially the forward calorimetry will suffer from very high radiation levels and intensified pileup in the detectors. For this reason, the CMS collaboration is designing a High Granularity Calorimeter (HGCAL) to replace the existing endcap calorimeters. It features unprecedented transverse and longitudinal segmentation for both electromagnetic (CE-E) and hadronic (CE-H) compartments. The CE-E and a large fraction of CE-H will consist of a sandwich structure with silicon as active detector material. This paper presents an overview of the ongoing sensor development for the HGCAL and highlights important design features and measurement techniques. The design and layout of an 8-inch silicon sensor prototype is shown. The hexagonal sensors consist of 235 pads, each with an area of about 1 cm~2. Furthermore, Synopsys TCAD simulations regarding the high voltage stability of the sensors for different geometric parameters are performed. Finally,two different IV characterisation methods are compared on the same sensor.
机译:在所谓的相2升级期间,CERN的CMS实验将经历显着的改善,以应对高亮度LHC(HL-LHC)时代的10倍发光。特别是前向量热法患有非常高的辐射水平并在探测器中加强堆积。因此,CMS协作正在设计高粒度量热计(HGCAL)以取代现有的Endcap热量计。它具有前所未有的横向和纵向分割,用于电磁(CE-E)和HOTRONC(CE-H)隔室。 CE-E和大部分的CE-H将由夹层结构包括硅作为有源探测器材料。本文概述了HGCAL的持续传感器开发,并突出了重要的设计特征和测量技术。显示了8英寸硅传感器原型的设计和布局。六角形传感器由235个垫组成,每个焊盘面积约为1cm〜2。此外,执行关于不同几何参数的传感器的高电压稳定性的Synopsys TCAD模拟。最后,在相同的传感器上比较了两种不同的IV特征方法。

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