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Deflection Monitoring Method Using Fiber Bragg Gratings Applied to Tracking Particle Detectors

机译:光纤布拉格光栅的变形监测方法在跟踪粒子探测器中的应用

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摘要

This paper proposes the use of fiber Bragg gratings (FBGs) for the deflection monitoring of a micromegas (MM) tracking particle detector to be installed at the European Organization for Nuclear Research during a major upgrade of the experiment ATLAS within 2018. MM detectors are designed to reach high spatial and time resolution, even if the design is not yet finalized. One mandatory issue for the MM detector is a precise monitoring of the deflection of the drift and read-out electrodes and/or of the panel hosting the electrodes. To this aim, FBG strain sensors are proposed and experimentally investigated as a sensing solution to monitor the strain state of the detector support panel hosting the drift and read-out electrodes. Finally, simple postprocessing analysis based on classical beam theory considering a rigid body permits calculating the panel deflection. Preliminary experimental results on first prototypes of small and large detector panels are presented and discussed.
机译:本文建议使用光纤布拉格光栅(FBG)进行兆兆(MM)跟踪粒子探测器的偏转监控,该探测器将在2018年ATLAS实验重大升级期间安装在欧洲核研究组织。MM探测器的设计即使设计尚未完成,也可以达到较高的空间和时间分辨率。 MM检测器的一个强制性问题是对漂移电极和读出电极和/或容纳电极的面板的偏转进行精确监控。为此,提出了FBG应变传感器并作为传感解决方案进行了实验研究,以监测承载漂移电极和读出电极的检测器支撑面板的应变状态。最后,基于经典梁理论并考虑到刚体的简单后处理分析可以计算面板挠度。提出并讨论了大型和小型探测器面板的第一个原型的初步实验结果。

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