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中国散裂中子源直线输运线束流位置测量系统

孟鸣 徐韬光 李芳 徐智虹 杨涛 李鹏 孙纪磊

孟鸣, 徐韬光, 李芳, 等. 中国散裂中子源直线输运线束流位置测量系统[J]. 强激光与粒子束, 2019, 31: 065104. doi: 10.11884/HPLPB201931.180313
引用本文: 孟鸣, 徐韬光, 李芳, 等. 中国散裂中子源直线输运线束流位置测量系统[J]. 强激光与粒子束, 2019, 31: 065104. doi: 10.11884/HPLPB201931.180313
Meng Ming, Xu Taoguang, Li Fang, et al. Beam position monitor system in linac to ring beam transport of China Spallation Neutron Source[J]. High Power Laser and Particle Beams, 2019, 31: 065104. doi: 10.11884/HPLPB201931.180313
Citation: Meng Ming, Xu Taoguang, Li Fang, et al. Beam position monitor system in linac to ring beam transport of China Spallation Neutron Source[J]. High Power Laser and Particle Beams, 2019, 31: 065104. doi: 10.11884/HPLPB201931.180313

中国散裂中子源直线输运线束流位置测量系统

doi: 10.11884/HPLPB201931.180313
基金项目: 国家重大科学装置工程-中国散裂中子源项目
详细信息
    作者简介:

    孟鸣(1985—), 男,硕士,从事高能加速器束流测量相关工作; mengming@mail.ihep.ac.cn

  • 中图分类号: TL506

Beam position monitor system in linac to ring beam transport of China Spallation Neutron Source

  • 摘要: 介绍了针对中国散裂中子源(CSNS)的直线到环输运线(LRBT)所设计的条带式束流位置测量(BPM)系统,探头方案以条带式电极为基础进行物理设计及参数优化,并通过机械标定减少机械加工误差,电子学选用商用数据处理方案。此系统在加速器实际运行中有效提供位置信息,对在线测量数据采用奇异值分解(SVD)进行分析,根据分析结果,对束流轨道测量的精度达到预期设计目的,满足物理调束需求。
  • 图  1  条带BPM机械结构图

    Figure  1.  Mechanical structure of stipline BPM

    图  2  条带BPM横向阻抗计算

    Figure  2.  Calculation of horizontal impedance in sripline BPM

    图  3  不同张角下仿真信号的二维分布

    Figure  3.  2-D distribution of simulation signal in different open angle

    图  4  BPM二维标定结果

    Figure  4.  2-D calibration result of BPM

    图  5  BPM电极信号

    Figure  5.  Signal of BPM electrode

    图  6  输运线BPM分辨率SVD与STD对比

    Figure  6.  Resolution distribution of BPM in LRBT with SVD and STD

    图  7  BPM和直线CT测量流强对比

    Figure  7.  Contrast of measured current between BPM and linear current test (CT)

  • [1] Lee S A, Igarashi Z A, Tanaka M B, et al. The beam diagnostics system in the J-PARC LINAC[J]. Proceedings of Linac, 2004, 10(1): 19-29. https://www.semanticscholar.org/paper/THE-BEAM-DIAGNOSTICS-SYSTEM-IN-THE-J-PARC-LINAC-Igarashi-Tanaka/e3e30898dfb24031bea70442f2d72b1ef9341323
    [2] Evtushenko P, Lehnert U, Michel P, et al. Electron beam diagnostics at the radiation source ELBE[C]//AIP Conference. American Institute of Physics, 2002.
    [3] 赵敬霞. BEPCⅡ输运线束流能散度探测器研制[D]. 北京: 中国科学院高能物理研究所, 2006: 32-35.

    Zhao Jingxia. Study on the Beam Energy-spread Monitor in the Transport line of BEPCⅡ. Bejing: Institute of High Energy Physics Chinese Academy of Sciences, 2006: 32-35
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    Li Jihao. Development of a strip BPM system for Hefei light linear accelerator. Hefei: University of Science and Technology of China, 2006: 45-48
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    Sun Baogen, Luo Jing, Wang Xiaohui. New development in accelerator beam diagnostics//National Particle Accelerator Academic Conference. 2007
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    [9] Shafer R E. Beam position monitoring[J]. AIP Conf Proc, 1992, 249: 601-636. http://www.onacademic.com/detail/journal_1000040081038010_a498.html
    [10] Barbero E, Bergoz J, Dehning B, et al. Performance of BPM electronics for the LEP spectrometer[C]//American Institute of Physics, 2000.
    [11] Zhang P, Baboi N, Jones R M. Statistical methods for transverse beam position diagnostics with higher order modes in third harmonic 3.9 GHz superconducting accelerating cavities at FLASH[J]. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 2014, 734: 84-94. https://www.sciencedirect.com/science/article/abs/pii/S0168900212013940
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出版历程
  • 收稿日期:  2018-11-10
  • 修回日期:  2019-03-04
  • 刊出日期:  2019-07-15

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