基于在欧洲核子研究中心研究用直线电子加速器的光纤中产生切伦科夫光的光束损耗探测技术

IF 1.5 3区 物理与天体物理 Q3 PHYSICS, NUCLEAR
S. Benítez, B. Salvachúa, M. Chen
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引用次数: 0

摘要

基于光纤的切伦科夫光束损耗监测器(oBLM)是粒子加速器监测系统中的一项革命性成就。由于切伦科夫现象的性质和光纤的固有特性,需要对光子的产生和光纤的光传输进行研究,以推断出系统末端的光传感器所探测到的切伦科夫光子总量。使用 fluka 软件对切伦科夫 oBLM 探测器系统进行了模拟,并考虑了光纤中的光衰减和捕获因素进行了后处理。此外,研究还包括欧洲核子研究中心研究用直线电子加速器(CLEAR)测试设施线路上产生的受控光束损耗的纵向光束损耗定位。本文对安装在 CLEAR 设施中的 oBLM 进行的切伦科夫光子探测进行了模拟、分析,并与实验数据进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Beam loss detection based on generation of Cherenkov light in optical fibers in the CERN Linear Electron Accelerator for Research

Beam loss detection based on generation of Cherenkov light in optical fibers in the CERN Linear Electron Accelerator for Research
Cherenkov optical beam loss monitors (oBLMs) based on optical fibers are a revolutionary achievement among the monitoring systems in particle accelerators. Due to the nature of the Cherenkov phenomenon and the intrinsic characteristics of optical fibers, the photon production and fiber light transmission need to be studied to deduce the total amount of Cherenkov photons detected by the photosensors attached at the end of the system. Simulations of the Cherenkov oBLM detector system have been implemented using the fluka software with postprocessing considering the light attenuation and capture factors in the optical fiber. In addition, the study includes the longitudinal beam loss localization of the controlled beam losses produced along the CERN Linear Electron Accelerator for Research (CLEAR) test facility line. In this paper, the Cherenkov photon detection by an oBLM installed in the CLEAR facility is simulated, analyzed, and compared with experimental data.
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来源期刊
Physical Review Accelerators and Beams
Physical Review Accelerators and Beams Physics and Astronomy-Surfaces and Interfaces
CiteScore
3.90
自引率
23.50%
发文量
158
审稿时长
23 weeks
期刊介绍: Physical Review Special Topics - Accelerators and Beams (PRST-AB) is a peer-reviewed, purely electronic journal, distributed without charge to readers and funded by sponsors from national and international laboratories and other partners. The articles are published by the American Physical Society under the terms of the Creative Commons Attribution 3.0 License. It covers the full range of accelerator science and technology; subsystem and component technologies; beam dynamics; accelerator applications; and design, operation, and improvement of accelerators used in science and industry. This includes accelerators for high-energy and nuclear physics, synchrotron-radiation production, spallation neutron sources, medical therapy, and intense-beam applications.
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