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Beam-profile instrumentation for beam-halo measurement: overall description and operation

机译:光束剖面测量光束型材仪表:整体描述和操作

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Within the halo experiment presently being conducted at the Low Energy Demonstration Accelerator (LEDA) at Los Alamos National Laboratory, specific beam instruments that acquire horizontally and vertically projected particle-density distributions out to approximately 10{sup}5: 1 dynamic range are located throughout the 52-magnet halo lattice. We measure the core of the distributions using traditional wire scanners, and the tails of the distribution using water-cooled graphite scraping devices. The wire scanner and halo scrapers are mounted on the same moving frame whose location is controlled with stepper motors. A sequence within the Experimental Physics and Industrial Control System (EPICS) software communicates with a National Instruments LabVIEW virtual instrument to control the motion and location of the scanner/scraper assembly. Secondary electrons from the wire scanner 0.033-mm carbon wire and protons impinging on the scraper are both detected with a lossy-integrator electronic circuit. Algorithms implemented within EPICS and in Research System's Interactive Data Language subroutines analyze and plot the acquired distributions. This paper describes this beam profile instrument, describes our experience with its operation, compares acquired profile data with simulation, and refers to other detailed papers.
机译:目前在Los Alamos国家实验室的低能量演示加速器(LEDA)上进行的Halo实验中,在整个{sup} 5:1的动态范围内地获取水平和垂直投影的粒子密度分布的特定光束仪器。 52-磁光晕晶格。我们使用传统的电线扫描仪测量分布的核心,以及使用水冷石墨刮装置的分配尾部。电线扫描仪和光环刮刀安装在相同的移动框架上,其位置具有步进电机的位置。实验物理和工业控制系统(EPIC)软件中的序列与国家仪器LabVIEW虚拟仪器通信,以控制扫描仪/刮刀组件的运动和位置。来自电线扫描仪的二次电子0.033mm碳线和撞击刮刀的质子均通过有损积分器电子电路检测。在史史和研究系统的交互式数据语言子程序中实现的算法分析并绘制所获取的分布。本文介绍了该光束配置文件仪器,描述了我们的操作经验,比较了具有模拟的获取的简档数据,并指的是其他详细的论文。

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