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A read-out system for online monitoring of intensity and position of beam losses in electron linacs

机译:在线监测电子直线加速器中束流损失强度和位置的读出系统

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摘要

In particle accelerators, beam loss position monitors (BLPM) are diagnostic systems revealing an interaction of the beam with the vacuum chamber or with other obstacles. They primarily measure the intensity of the beam loss by detecting particles from the electromagnetic shower in the proximity of the beam pipe. Through an appropriate detector configuration, this measurement also provides information about the longitudinal position of the beam loss along the beam line. This paper presents the design and performance of the BLPM system originally proposed and tested [1] at the SPARC accelerator at Frascati National Laboratory (LNF) of INFN and, later, further developed in the framework of a collaboration with the FERMI@Elettra project at Sincrotrone Trieste. For both facilities, the monitoring of beam losses in permanent magnet undulators is of particular interest. The BLPM consists of quartz fibers stretched in parallel to the beam axis which collect the Cherenkov light generated by charged particles traversing them. Multi-pixel photon counters are used to transform the light into a proportional time dependent electric signal. The use of these simple but highly sensitive photon detectors instead of traditional photomultiplier tubes is an innovation over previous BLPM implementations. It has allowed the development of a compact and reliable read-out system at low cost. In daily use, the system provides information to machine protection and control systems for beam transport monitoring and optimization.
机译:在粒子加速器中,束流损失位置监控器(BLPM)是诊断系统,可揭示束流与真空室或其他障碍物的相互作用。它们主要通过检测束管附近电磁花洒中的颗粒来测量束损失的强度。通过适当的检测器配置,此测量还可以提供有关沿光束线的光束损耗的纵向位置的信息。本文介绍了BLPM系统的设计和性能,该系统最初是在INFN的Frascati国家实验室(LNF)的SPARC加速器上提出并测试的[1],后来在与FERMI @ Elettra项目合作的框架下进一步开发的。 Sincrotrone的里雅斯特。对于这两种设备,监视永磁波荡器中的束损耗尤为重要。 BLPM由平行于光束轴拉伸的石英纤维组成,这些石英纤维收集了由带电粒子穿过它们所产生的Cherenkov光。多像素光子计数器用于将光转换为与时间成比例的电信号。这些简单但高度灵敏的光子探测器代替传统的光电倍增管的使用是对以前的BLPM实现的一项创新。它允许以低成本开发紧凑而可靠的读出系统。在日常使用中,该系统向机器保护和控制系统提供信息,以进行光束传输监控和优化。

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