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微型轫致辐射X射线光源扰动器设计
引用本文:滕建,曹磊峰,范伟,赵宗清,谷渝秋.微型轫致辐射X射线光源扰动器设计[J].强激光与粒子束,2012,24(5):1107-1110.
作者姓名:滕建  曹磊峰  范伟  赵宗清  谷渝秋
作者单位:1.中国工程物理研究院 激光聚变研究中心, 四川 绵阳 621 900;
摘    要:利用电子轨迹跟踪方法对微型轫致辐射X射线光源的一个关键部件扰动器进行了设计研究。分析了扰动器工作原理,使用CST电磁工作室设计了扰动器的磁场分布,并计算了在此磁场分布下电子的注入效果与扰动器中心位置的关系。结果表明:扰动器的幅向中心位置越靠近电子跨越中心轨道的位置,电子注入后的振幅越小,但同时所需要的磁场强度越大。最后分析了该扰动器注入的横向、纵向接受度,其具有3 mm0.23 mrad的横向接受度和0.1%的能量接受度。

关 键 词:微型轫致辐射光源    扰动器    电子轨道跟踪    磁场
收稿时间:2011/7/13

Design of perturbator for mini bremsstrahlung X-ray source
Teng Jian , Cao Leifeng , Fan Wei , Zhao Zongqing , Gu Yuqiu.Design of perturbator for mini bremsstrahlung X-ray source[J].High Power Laser and Particle Beams,2012,24(5):1107-1110.
Authors:Teng Jian  Cao Leifeng  Fan Wei  Zhao Zongqing  Gu Yuqiu
Institution:1.Research Center of Laser Fusion,CAEP,P.O.Box 919-986,Mianyang 621900,China;2.Department of Physics,Harbin Institute of Technology,Harbin 150001,China
Abstract:Using electron trace program and CST electromagnetic studio, the paper investigated a key component of mini bremsstrahlung X-ray source, perturbator, designed the distribution of the perturbator magnetic field, and studied its effect on the electron trajectory when the perturbator was placed in different angular positions. When the angular position of the perturbator is close to the position where the electrons cross the center trajectory, the amplitude of the electron after being captured is smallest, but the strength of the magnetic field needed is greatest. Moreover, the analysis on the transverse and longitudinal acceptance shows that the transverse acceptance is 3 mm×0.23 mrad and the energy acceptance is 0.1%.
Keywords:mini bremsstrahlung X-ray source  perturbator  electron tracing  magnetic field
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