CIAE质子治疗光束线系统光束诊断的研制与调试

IF 1.9 3区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Nuclear Science Pub Date : 2024-10-23 DOI:10.1109/TNS.2024.3485053
Yang Wang;Zhiguo Yin;Tianjue Zhang;Bohan Zhao;Chuan Wang;Tianyi Jiang;Qiankun Guo;Chuanye Liu;Peng Zhu
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引用次数: 0

摘要

中国原子能科学研究院研制了一种基于超导回旋加速器的质子治疗(PT)系统,具有高剂量率、能量变化快、体积小、能耗低的特点。从回旋加速器到喷嘴,光束线配备了51个磁体,包括6个30°,1个60°和2个75°偶极子。其严格的对称性确保了更好的光束光学性能,例如宽能量范围光束的消色差。为了满足高质量光束线的光束调试需求,公司自主开发了光束诊断系统。沿着光束线,系统包括:1)七个标准化的综合诊断单元(法拉第杯、双线扫描仪和光束轮廓监视器的组合);2) 4对X-Y狭缝,用于能量选择和发射度重定义;3)若干独立的圆形准直器、快速光束截止装置和用于光束位置的在线监测电离室,以及用于测量空气段光束强度的法拉第杯,以便灵活使用。本文介绍了诊断系统的设计、专用电子器件的设计以及电磁兼容性的考虑。描述了pa级低强度光束的双线结构。本文还详细介绍了作为白光二极管黄色荧光粉的重要光子材料掺铈钇铝石榴石(Ce: YAG),该材料在质子束轮廓测量中具有极低的强度阈值。
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Development and Commissioning of the Beam Diagnostics for CIAE Proton Therapy Beamline System
A superconducting cyclotron-based proton therapy (PT) system, featuring a high dose rate, fast energy varying, compact size, and low energy consumption, is developed at the China Institute of Atomic Energy (CIAE). From the cyclotron to the nozzle, the beamline is equipped with 51 magnets, including six 30°, one 60°, and two 75° dipoles. Its strict symmetry ensures better beam optics, such as achromatic aberration for a wide energy range beam. The beam diagnostics system has been developed in-house to meet the beam commissioning needs of those high-quality beamlines. Along the beamline, the system includes: 1) seven standardized comprehensive diagnostic units (a combination of Faraday cup, dual-wire scanner, and optical beam profile monitor); 2) four pairs of X-Y slits for energy selection and emittance redefinition; and 3) several separate circular collimators, fast beam cutoff devices, and online monitoring ionization chambers for beam position, as well as Faraday cup for measuring beam intensity in the air section for flexible use. In this article, the design of the diagnostic system, the specialized electronics, and the electromagnetic compatibility (EMC) consideration were introduced. The dual-wire structure for the pA-level low-intensity beam was depicted. The cerium-doped yttrium aluminum garnet (Ce: YAG), an essential photonic material used as a yellow phosphor for white light-emitting diodes, with a very low-intensity threshold for proton beam profile measurement, was also presented in detail.
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来源期刊
IEEE Transactions on Nuclear Science
IEEE Transactions on Nuclear Science 工程技术-工程:电子与电气
CiteScore
3.70
自引率
27.80%
发文量
314
审稿时长
6.2 months
期刊介绍: The IEEE Transactions on Nuclear Science is a publication of the IEEE Nuclear and Plasma Sciences Society. It is viewed as the primary source of technical information in many of the areas it covers. As judged by JCR impact factor, TNS consistently ranks in the top five journals in the category of Nuclear Science & Technology. It has one of the higher immediacy indices, indicating that the information it publishes is viewed as timely, and has a relatively long citation half-life, indicating that the published information also is viewed as valuable for a number of years. The IEEE Transactions on Nuclear Science is published bimonthly. Its scope includes all aspects of the theory and application of nuclear science and engineering. It focuses on instrumentation for the detection and measurement of ionizing radiation; particle accelerators and their controls; nuclear medicine and its application; effects of radiation on materials, components, and systems; reactor instrumentation and controls; and measurement of radiation in space.
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