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Performance studies for the new CMS outer tracker module concept at HL-LHC based on measurements of charge collection properties in irradiated silicon sensors

机译:基于对辐照硅传感器中电荷收集特性的测量,对HL-LHC上的新型CMS外跟踪器模块概念进行了性能研究

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摘要

In order to increase the discovery potential of the experiments at the Large Hadron Collider, the high-luminosity phase of the LHC (HL-LHC) is expected to deliver a total of 3000 fb-1 integrated luminosity. The instantaneous luminosity will be increased by a factor of 5 compared to the LHC design luminosity. This results in an intensified track density and radiation level especially in the tracking systems, requiring new radiation hard silicon sensors for the CMS Outer Tracker. To cope with the increased track density and trigger rates, a new module concept based on the coincidence of hits in two closely stacked sensors is pursued for the new tracker, allowing the use of tracking and transverse momentum information already at the first trigger level. The performance of the new trigger module concept has been studied using a parametrization of the charge drift in the electric and magnetic field in the sensor. From that, the phase-space of efficient operation of the module concept and the binary readout in terms of collected charge and noise has been explored.
机译:为了增加大型强子对撞机实验的发现潜力,大型强子对撞机(HL-LHC)的高发光度阶段有望提供总计3000 fb-1的综合发光度。与LHC设计的光度相比,瞬时光度将增加5倍。这会导致轨道密度和辐射水平增强,尤其是在跟踪系统中,这需要用于CMS外跟踪器的新型辐射硬硅传感器。为了应对增加的轨道密度和触发率,新的跟踪器采用了基于两个紧密堆叠的传感器中的命中重合的新模块概念,从而允许在第一触发级别使用跟踪和横向动量信息。使用传感器中电场和磁场中电荷漂移的参数化研究了新触发模块概念的性能。据此,探索了模块概念的有效操作的相空间以及就收集的电荷和噪声而言的二进制读数。

著录项

  • 作者

    Nurnberg, Andreas Matthias;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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