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The silicon sensors for the High Granularity Calorimeter of CMS

机译:CMS高粒度量热计的硅传感器

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摘要

The installation of the High-Luminosity Large Hadron Collider (HL-LHC) presents unprecedented challenges to experiments like the Compact Muon Solenoid (CMS) in terms of event rate, integrated luminosity and therefore radiation exposures. To cope with this new environment, new detectors will be installed during the CMS Phase 2 Upgrade, including the replacement of the calorimeter endcaps with the "High Granularity Calorimeter" (HGCAL), which contains silicon sensors and scintillators as active elements. The silicon sensors will be produced in an 8" wafer process, which is new for high-energy physics, so it demands extensive quality verification. A first batch of prototype sensors underwent electrical tests at the institutes of the CMS Collaboration. Testing revealed major problems with the mechanical stability of the thin backside protective layer, that were not seen in earlier 6" prototypes produced by a different backside processing method. Following these results, the HGCAL group introduced the concept of "frontside biasing", allowing testing of the sensors without exposing its backside, verified the applicability, and adapted the prototype design to apply this method in series production.
机译:高亮度大强子撞机器(HL-LHC)的安装在事件率,集成光度,因此辐射曝光方面,如Compact Muon螺线管(CMS)等实验到实验。为了应对这个新环境,将在CMS相2升级期间安装新的探测器,包括用“高粒度量热计”(HGCAL)更换热量计终点,其中包含硅传感器和闪烁体作为有源元素。硅传感器将在8“晶圆过程中产生,这是高能量物理的新功能,因此需要大量的质量验证。第一批原型传感器在CMS协作的研究所进行电气测试。测试显示了主要问题凭借薄背面保护层的机械稳定性,在早期的6“原型中未看出通过不同的背面加工方法产生的原型。在这些结果之后,HGCAL组介绍了“前侧偏置”的概念,允许传感器的测试而不暴露其背面,验证了适用性,并调整了原型设计,在串联生产中应用了这种方法。

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