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Validation of synthetic diamond for a beam condition monitor for the compact muon solenoid experiment

机译:合成金刚石的验证用于紧凑μ子螺线管实验的光束条件监视器

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摘要

The CERN Large Hadron Collider (LHC) will collide two counter rotating proton beams. The energy stored in each beam is about 350 MJ. If there is a failure in an element of the accelerator, the resulting beam losses could cause damage not only to the accelerator itself, but also to the physics experiments installed. Within the Compact Muon Solenoid experiment (CMS), the use of a Beam Condition Monitor (BCM) is planned to monitor a possible fast increase of the particle flux near the interaction point. The system will flag the onset of adverse beam conditions within the CMS experiment, and, if necessary, input into the beam abort system of the LHC requesting a fast beam dump. Constraints on BCM design from radiation hardness, a minimal material and services budget, and the need for fast signals from sensors with high sensitivity and a large dynamic range, have led to the investigation of synthetic chemical vapor deposited (CVD) diamond for the BCM sensor. In a 5 GeV hadron beam the response of CVD diamonds was tested in fluxes ranging from single minimium ionizing particles (MIPs) to 108 MIPs per cm2, delivered over 40 ns. The signal response, linearity, and stability of both un-irradiated and irradiated sensors were tested over this flux range, and will be presented herein. The results confirm the applicability of CVD diamond for this beam monitoring application. © 2007 IEEE.
机译:CERN大型强子对撞机(LHC)将碰撞两个反向旋转的质子束。每个光束中存储的能量约为350 MJ。如果加速器的某个元件发生故障,则产生的光束损失不仅会损坏加速器本身,还会损坏已安装的物理实验。在紧凑型Muon螺线管实验(CMS)中,计划使用光束条件监视器(BCM)来监视相互作用点附近粒子通量的可能快速增加。系统将标记CMS实验中不利的光束条件的开始,并在必要时输入LHC的光束中止系统,要求进行快速光束转储。由于辐射硬度,最小的材料和服务预算以及对来自具有高灵敏度和大动态范围的传感器的快速信号的需求,对BCM设计的限制已导致对用于BCM传感器的合成化学气相沉积(CVD)金刚石的研究。在5 GeV强子束中,对CVD金刚石的响应进行了测试,其通量范围从单个最小电离粒子(MIP)到每平方厘米108个MIP,传递时间超过40 ns。在此通量范围内测试了未辐照和辐照传感器的信号响应,线性和稳定性,并将在此处介绍。结果证实了CVD金刚石在这种光束监测应用中的适用性。 ©2007 IEEE。

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