期刊文献+

两种典型结构强流自箍缩二极管技术研究 被引量:2

Research on two typical intense current self-pinching diodes
下载PDF
导出
摘要 主要介绍了箍缩聚焦二极管和自箍缩离子束二极管的研究进展。重点介绍了近几年发展的阳极杆箍缩聚焦二极管的理论模拟和实验结果,在“闪光二号”加速器和2MV脉冲功率驱动源上进行了阳极杆箍缩二极管实验,二极管输出电压1.8—2.1MV,电流40—60kA,脉宽(FWHM)50~60n8,1m处的脉冲X剂量约20~30mGy,焦斑直径约Imm,X射线最高能量1.8MeV。在“闪光二号”加速器上开展了高功率离子束的产生和应用研究,给出了自箍缩反射离子束二极管的结构和工作原理,实验获得的离子束峰值电流~160kA,离子的峰值能量-500keV,开展了利用高功率质子束轰击19F靶产生6~7MeV准单能脉冲γ射线,模拟x射线热一力学效应等应用基础研究。 Structures of several types of intense pinching diodes were introduced. The latest simulation and experiment results on rod pinch focusing diodes were introduced. Experimental researches were carried out on FLASH Ⅱ and 2 MV pulsed power drivers. The voltage of RPD is 1.8 -2.1 MV, the current is 40 -60 kA, the FWHM is 50 - 60 ns. The X-ray dose at 1 m from the diode in the forward direction was about 20 - 30 mGy. The spot diameter was about 1 ram, the maximum energy was 1.8 MeV. The preliminary research results for generation and application of high power ion beam (HPIB) on the FLASH Ⅱ accelerator were reported. The structure and principle of pinch reflex ion beam diode were introduced. The HPIB peak current of - 160 kA is obtained with a peak energy of -500 keV. The experimental investigations of generating 6 -7 MeV quasi-monoenergetic pulsed γ- rays with high power ion (proton) beams striking 19F target are presented. In addition, the research results for thermal-mechanical effects on the material irradiated with HPIB applied to simulation X-ray were also discussed.
出处 《中国工程科学》 2009年第11期70-78,共9页 Strategic Study of CAE
基金 国家自然科学基金资助项目(10775112 19975037) 国防预研基金资助项目
关键词 阳极杆箍缩二极管 离子束二极管 X射线 高功率离子束 箍缩 聚焦 rod-pinch diode ion beam diode X-ray high power ion beam pinch focus
  • 相关文献

参考文献16

  • 1Cooperstein G, Boiler J R, Commisso R J, et al. Theoretical modeling and experimental characterization of a rod -pinch diode[ J ]. Phys Plasmas,2001,8(10) :4618 -4636.
  • 2Robert J Commisso, Gerald Cooperstein, David D Hinshelwood, et al. Experimental evaluation of a megavolt rod - pinch diode as a radiography source[J]. IEEE Trans Plasma Sci,2002,30(2) :338 -351.
  • 3马成刚,邓建军,谢敏.Rod-pinch二极管理论及数值模拟[J].强激光与粒子束,2007,19(2):348-352. 被引量:4
  • 4陈林,谢卫平,邓建军.X射线闪光照相杆箍缩二极管技术最新进展[J].强激光与粒子束,2006,18(4):643-647. 被引量:16
  • 5John O' Maliey, Ian Smith, John Maenchen, et al. Advances in pulsed power - driven radiography systems[ J]. Proceedings of the IEEE, 2004,92(7) :1021 - 1042.
  • 6杨海亮,邱爱慈,孙剑锋,等.强流脉冲粒子束技术研究新进展[A].2008年全国荷电粒子源、粒子束学术会议论文集[C].哈尔滨,2008:90-105.
  • 7杨海亮,邱爱慈,孙剑锋,何小平,汤俊萍,王海洋,李洪玉,张嘉生,许日,彭建昌,任书庆,李鹏,杨莉,黄建军,张国光,欧阳晓平.高功率离子束的应用研究[J].强激光与粒子束,2003,15(5):497-501. 被引量:4
  • 8杨海亮,邱爱慈,张嘉生,何小平,孙剑锋,彭建昌,汤俊萍,任书庆,欧阳晓平,张国光,黄建军,杨莉,王海洋,李洪玉,李静雅.“闪光二号”加速器HPIB的产生及应用初步结果[J].物理学报,2004,53(2):406-412. 被引量:16
  • 9杨海亮,邱爱慈,孙剑锋,何小平,张嘉生,汤俊萍,王海洋,许日,彭建昌,任书庆,李鹏,杨莉,黄建军,张国光,欧阳晓平.强流脉冲质子束轰击^(19)F靶产生6—7MeV准单能脉冲γ射线初步实验研究[J].核技术,2004,27(3):188-192. 被引量:2
  • 10Golden J, Mahaffey R A, Pasour J A, et al. Intense proton beam current measurement via prompt γ rays from nuclear reactions [J]. Rev Sci Instrum,1978, 49(10) :1384-1387.

二级参考文献63

  • 1胡克松,苏毅,黄孙仁,陈裕涛,刘锡三,付淑珍,沈元发,李振荣.环形束超辐射自由电子激光实验[J].强激光与粒子束,1989,1(1):33-39. 被引量:4
  • 2王淦昌.高功率粒子束及其应用[J].强激光与粒子束,1989,1(1):1-21. 被引量:20
  • 3陈林,谢卫平,邓建军.X射线闪光照相杆箍缩二极管技术最新进展[J].强激光与粒子束,2006,18(4):643-647. 被引量:16
  • 4张嘉生 邱爱慈 彭建昌 等.[A].张嘉生,邱爱慈,彭建昌,等.2001年全国荷电粒子源、粒子束学术会议论文集[C].深圳.海口,2001.65-69.
  • 5Baumung K, Bluhm H J, Goel B, et al. Laser and Part Beams, 1996, 14(2): 181-209.
  • 6YANG Hailiang, QIU Aici, ZHANG Jiasheng, et al.Proceedings of the Third International Symposium on Pulsed Power and Plasma Applications, Mianyang, China,2002, 180-183.
  • 7Zhou N et a 2000 High Power aser and Partice Beams12 249(in Chinese)[周南等 2000 强激光与粒子束12 249]
  • 8Shi et a 2000 High Power aser and Partice Beams12 382(in Chinese)[石磊等 2000 强激光与粒子束12 382]
  • 9刘锡三译.强流带电粒子束物理学导论[M].原子能出版社,1990年..
  • 10Mach H et a 1983 IEEE Trans.Nuc.Sci.30 1514

共引文献54

同被引文献21

  • 1陈林,谢卫平,邓建军.X射线闪光照相杆箍缩二极管技术最新进展[J].强激光与粒子束,2006,18(4):643-647. 被引量:16
  • 2李勤,石金水,禹海军,王莉萍,何晖.狭缝法测量X射线斑点大小[J].强激光与粒子束,2006,18(10):1691-1694. 被引量:10
  • 3Commisso R J, Cooperstein G, Hinshelwood D D, et al. Experimental evaluation of a megavolt rod pinch diode as a radiography souree[J]. IEEE Trans on Plasma Science, 2002,30 (1) : 338-351.
  • 4Richardson W H. Bayesian-based iterative method of image restoration[J]. J Opt Soc Am, 1972,62(1): 55-59.
  • 5Biggs D S C, Andrews M. Acceleration of iterative image restoration algorithms[J]. Appl Opt, 1997,36(8) : 1766-1775.
  • 6Daint y J C, Shaw R. Image science[M]. New York : Academic Press, 1974 : 214.
  • 7Menge P R, Johnson D L, Maenchen J E, et al. Rod pinch radiography source optimization at 2.3 MV[C]//IEEE International Conference on Pulsed Power Plasma Science. 2002:454-457.
  • 8Richardson R A, Houck T L. Roll bar X-ray spot size measurement technique[C]//Proceedings of the 19th International Linear Accelerator Conference. 1998 : 908-910.
  • 9Ekdahl C.Mondern electron accelerators for radiography[C] //Proceedings of the 13th international Pulsed Power Conference.2001:29-34.
  • 10Thomas K J.Pulsed power drivers and diodes for X-ray radiography[C] //Proceedings of 2005 Particle Accelerator Conference.2005:510-514.

引证文献2

二级引证文献10

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部