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介质壁加速器加速场建立过程中波传输分析
引用本文:赵全堂,袁平,张子民,曹树春,申晓康,赵红卫. 介质壁加速器加速场建立过程中波传输分析[J]. 强激光与粒子束, 2011, 23(6). DOI: 10.3788/HPLPB20112306.1629
作者姓名:赵全堂  袁平  张子民  曹树春  申晓康  赵红卫
作者单位:1. 中国科学院 近代物理研究所, 兰州 730000; 2. 中国科学院 研究生院, 北京 100049
基金项目:国家自然科学基金委员会资助创新群体基金,中科院近代物理研究所所长基金
摘    要: 介绍了介质壁加速器(DWA)的原理和几种可能实现的结构。通过对多层介质圆柱的平面波电磁散射的研究,用FORTRAN语言编写程序计算和分析了DWA加速管三层介质柱体结构的平面波电磁散射的散射宽度与几何结构参数、材料参数的关系,用以优化设计介质壁加速管结构。计算结果表明:当加速管材料和等势环介电常数一定时,平面波电磁散射宽度随半径增大而增大;当加速管内外径一定时,加速管材料和等势环介电常数增大时散射宽度变化不明显,但最小散射宽度显著减小。当加速管半径和材料一定时,总能找到使散射宽度达到最小的等势环介质厚度。

关 键 词:介质壁加速器  加速管结构  介质圆柱散射  散射宽度  能量耦合效率
收稿时间:1900-01-01;

Accelerating field waves transmission of dielectric wall accelerator
Zhao Quantang,Yuan Ping,Zhang Zimin,Cao Shuchun,Shen Xiaokang,Zhao Hongwei. Accelerating field waves transmission of dielectric wall accelerator[J]. High Power Laser and Particle Beams, 2011, 23(6). DOI: 10.3788/HPLPB20112306.1629
Authors:Zhao Quantang  Yuan Ping  Zhang Zimin  Cao Shuchun  Shen Xiaokang  Zhao Hongwei
Affiliation:(1. Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, China;2.Graduate University of Chinese Academy of Sciences, Beijing 100049, China)
Abstract:The paper introduces the principle and some feasible structures of dielectric wall accelerator (DWA). By the study of electromagnetic scattering of multilayer dielectric cylinders, the relation of scattering width, parameters of materials and structure of beam pipe of DWA is investigated with FORTRAN program, for designing the accelerating beam pipe of DWA with high accelerating gradient and high energy coupling efficiency. The results confirm that,with permittivities of dielectric cylinders fixed, the scattering width becomes larger when the radiuses get larger. With radiuses of dielectric cylinders fixed, the scattering width shows no obvious change when the permittivities become larger, but the minimal scattering width becomes smaller. When the radiuses and permittivities of the first
Keywords:structure of beam pipe  electromagnetic scattering at dielectric cylinder  scattering width  energy coupling efficiency
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