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强流多注相对论速调管中电子束特性的初步研究

刘振帮 金晓 黄华 陈怀璧 王淦平

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强流多注相对论速调管中电子束特性的初步研究

刘振帮, 金晓, 黄华, 陈怀璧, 王淦平

Preliminary study of the characteristic of multi-beam in intense multi-beam relativistic klystron

Liu Zhen-Bang, Jin Xiao, Huang Hua, Chen Huai-Bi, Wang Gan-Ping
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  • 多注速调管采用多个低导流系数的电子束并行工作, 相对于常规单注结构速调管具有工作电压低、效率和增益高等特点, 但多电子束特性会带来新的影响. 本文基于这方面需求, 对强流多注电子束在多注器件结构中的传输特性进行了理论分析、计算机模拟和初步实验研究, 研究结果表明多注电子束各束之间的空间电荷力作用会使得电子束绕系统中心旋转, 而各束自身的空间电荷力作用, 会使得电子束绕束自身中心旋转, 并发生扩散, 两种作用都可能会使得电子束在传输过程中发生损失.
    Compared with the conventional klystron, high power multi-beam klystron makes use of many low perveance beams, then it has a high output efficiency and low operating voltage, but it brings new problems. There fore, the multi-beam intense relativistic electron beam transmission in the multi-beam klystron is investigated by experiment and simulation. The results show that the multi-beam rotates around the center of the system due to the interaction of the multi-beam, and simultaneously the multi-beam rotates around its own center due to the space charge effect of each beam's own. All the process can result in electron beams loss.
    [1]

    Benford J, Swegle J A 2008 High Power Microwave Second Edition (Beijing: National Defense Industry Press) pp293-335 (in Chinese) [Benford J, Swegle J A 2008 高功率微波(第二版) (中译本) (北京: 国防工业出版社)第293—335页]

    [2]

    Robert J B, Edl S 2005 High Power Microwave Sources and Technologies (BeiJing: Tsinghua University Press) pp57-63 (in Chinese)[ Robert J B, Edl S 2005 高功率微波源与技术(中译本) ( 北京: 清华大学出版社) 第57—63页]

    [3]

    Liu Z B, Huang H, Jin X, Chen H B 2011 Acta Phys. Sin. 60 128402 (in Chinese) [刘振帮, 黄华, 金晓, 陈怀璧 2011 物理学报 60 128402]

    [4]

    Zhang R, Wang Y 2007 Vacuum Electronics 3 25 (in Chinese) [张瑞, 王勇 2007 真空电子技术 3 25]

    [5]

    Wang Y, Ding Y G, Liu P K, Xie J X, Zhang R 2005 High Power Laser and Particle Beams 8 1133 (in Chinese) [王勇, 丁耀根, 刘濮鲲, 谢敬新, 张瑞 2005 强激光与粒子束 8 1133]

    [6]

    Ding Y G, Ruan C J, Shen B, Zhang Y Q, Cao J 2006 Acta Electronica Sinica 12A 2337 (in Chinese) [丁耀根, 阮存军, 沈斌, 张永清, 曹静 2006 电子学报 12A 2337]

    [7]

    Khanh T N, David K A, Dean E P, Baruch L 2004 IEEE Transactions on Plasma Science 32 1119

    [8]

    Khanh T N, Dean E P, David K A, George M 2005 IEEE Transactions on Plasma Science 33 685

    [9]

    Xie J L, Zhao Y X 1966 Bunching Theory of Klystron (Beijing: Science Press) pp104-108, 208-209 (in Chinese) [谢家麟, 赵永翔 1966 速调管群聚理论 (北京: 科学出版社) 第104—108, 208—209页]

    [10]

    Huang H, Meng F B, Fan Z K, Li Z H 2006 Acta Phys. Sin. 55 5344 (in Chinese) [黄华, 孟凡宝, 范植开, 李正红, 2006 物理学报 55 5344]

  • [1]

    Benford J, Swegle J A 2008 High Power Microwave Second Edition (Beijing: National Defense Industry Press) pp293-335 (in Chinese) [Benford J, Swegle J A 2008 高功率微波(第二版) (中译本) (北京: 国防工业出版社)第293—335页]

    [2]

    Robert J B, Edl S 2005 High Power Microwave Sources and Technologies (BeiJing: Tsinghua University Press) pp57-63 (in Chinese)[ Robert J B, Edl S 2005 高功率微波源与技术(中译本) ( 北京: 清华大学出版社) 第57—63页]

    [3]

    Liu Z B, Huang H, Jin X, Chen H B 2011 Acta Phys. Sin. 60 128402 (in Chinese) [刘振帮, 黄华, 金晓, 陈怀璧 2011 物理学报 60 128402]

    [4]

    Zhang R, Wang Y 2007 Vacuum Electronics 3 25 (in Chinese) [张瑞, 王勇 2007 真空电子技术 3 25]

    [5]

    Wang Y, Ding Y G, Liu P K, Xie J X, Zhang R 2005 High Power Laser and Particle Beams 8 1133 (in Chinese) [王勇, 丁耀根, 刘濮鲲, 谢敬新, 张瑞 2005 强激光与粒子束 8 1133]

    [6]

    Ding Y G, Ruan C J, Shen B, Zhang Y Q, Cao J 2006 Acta Electronica Sinica 12A 2337 (in Chinese) [丁耀根, 阮存军, 沈斌, 张永清, 曹静 2006 电子学报 12A 2337]

    [7]

    Khanh T N, David K A, Dean E P, Baruch L 2004 IEEE Transactions on Plasma Science 32 1119

    [8]

    Khanh T N, Dean E P, David K A, George M 2005 IEEE Transactions on Plasma Science 33 685

    [9]

    Xie J L, Zhao Y X 1966 Bunching Theory of Klystron (Beijing: Science Press) pp104-108, 208-209 (in Chinese) [谢家麟, 赵永翔 1966 速调管群聚理论 (北京: 科学出版社) 第104—108, 208—209页]

    [10]

    Huang H, Meng F B, Fan Z K, Li Z H 2006 Acta Phys. Sin. 55 5344 (in Chinese) [黄华, 孟凡宝, 范植开, 李正红, 2006 物理学报 55 5344]

计量
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  • PDF下载量:  452
  • 被引次数: 0
出版历程
  • 收稿日期:  2012-06-13
  • 修回日期:  2012-07-10
  • 刊出日期:  2012-12-05

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