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A method for real time monitoring of charged particle beam profile and fluence

机译:一种实时监测带电粒子束轮廓和注量的方法

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摘要

Detectors planned for use at the Large Hadron Collider will operate in a radiation field produced by beam collisions. To predict the radiation damage to the components of the detectors, prototype devices are irradiated at test beam facilities that reproduce the radiation conditions expected. The profile of the test beam and the fluence applied per unit time must be known. Techniques such as thin metal foil activation and radiographic image analysis have been used to measure these; however, some of these techniques do not operate in real time, have low sensitivity, or have large uncertainties. We have developed a technique to monitor in real time the beam profile and fluence using an array of p-i-n semiconductor diodes whose forward voltage is linear with fluence over the fluence regime relevant to, for example, tracking in the LHC Upgrade era. We have demonstrated this technique in the 800 MeV proton beam at the LANSCE facility of Los Alamos National Laboratory.
机译:计划在大型强子对撞机上使用的探测器将在光束碰撞产生的辐射场中工作。为了预测辐射对检测器组件的损害,在可再现预期辐射条件的测试光束设施处对原型设备进行辐射。必须知道测试光束的轮廓和每单位时间施加的注量。诸如薄金属箔活化和射线照相图像分析之类的技术已被用来测量这些。但是,其中一些技术不能实时运行,灵敏度低或不确定性大。我们已经开发出一种技术,可以使用一系列p-i-n半导体二极管实时监视光束轮廓和能量密度,这些正向电压在与例如LHC升级时代的跟踪有关的能量密度范围内,其正向电压与能量密度呈线性关系。我们已经在洛斯阿拉莫斯国家实验室的LANSCE设施的800 MeV质子束中证明了该技术。

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