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Monitoring of absolute mirror alignment at COMPASS RICH-1 detector

机译:在COMPASS RICH-1检测器上监控绝对镜面对准

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摘要

The gaseous COMPASS RICH-1 detector uses two spherical mirror surfaces, segmented into 116 individual mirrors, to focus the Cherenkov photons onto the detector plane. Any mirror misalignment directly affects the detector resolution. The on-line Continuous Line Alignment and Monitoring (CLAM) photogrammetry-based method has been implemented to measure the alignment of individual mirrors which can be characterized by the center of curvature. The mirror wall reflects a regular grid of retroreflective strips placed inside the detector vessel. Then, the position of each mirror is determined from the image of the grid reflection. The images are collected by four cameras. Any small mirror misalignment results in changes of the grid lines’ positions in the image. The accuracy limits of the CLAM method were checked by laser interferometry and are below 0.1 mrad.
机译:气态的COMPASS RICH-1检测器使用两个球面镜表面,分为116个独立的镜面,将切伦科夫光子聚焦到检测器平面上。任何镜面未对准都会直接影响探测器的分辨率。基于在线连续线对准和监视(CLAM)摄影测量法的方法已经实现,可以测量可以通过曲率中心表征的单个反射镜的对准。镜壁反射放置在检测器容器内部的规则的逆反射条格。然后,根据栅格反射图像确定每个反射镜的位置。图像由四个摄像机收集。任何微小的镜面未对准都会导致网格线在图像中的位置发生变化。 CLAM方法的准确度极限是通过激光干涉法检查的,并且低于0.1 mrad。

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