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Rod-pinch二极管理论及数值模拟 被引量:4

Theory and numerical simulation of a rod-pinch diode
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摘要 介绍了Rod-pinch二极管的基本结构和工作原理,采用Laminar模型分析了Rod-pinch二极管中的粒子运动过程及其阻抗特性。考虑背景空间离子电荷的影响,用1维Laminar方程分析Rod-pinch二极管中电子的自箍缩过程,并且利用Magic程序对其中的粒子运动进行数值模拟,求解二极管中的电压和电流,最终得出二极管的阻抗特性,在较低电压下,负极性RPD的性能明显不如正极性RPD。根据临界电流经验公式,初步验证Laminar理论模型的可行性。 This paper summarized the geometry and principle of the rod-pinch diode. Using Laminar model and considering the effect of background ion space charge on the one dimensional, Laminar equilibria of relativistic, magnetically self-insulated, electron flow is presented. Both positive and negative polarity diodes are simulated using MAGIC program, the current and voltage have also been solved through numerical simulation method. Results from numerical simulation are consistent with the calculations. In particular, it is shown that, as the voltage is the same, the self-pinch of negative rod-pinch diode is more difficult than that of the positive rod-pinch diode. Finally the characteristic impedance is detruded, the feasibility of laminar model has been validated.
出处 《强激光与粒子束》 EI CAS CSCD 北大核心 2007年第2期348-352,共5页 High Power Laser and Particle Beams
关键词 Laminar模型 Rod-pinch二极管 数值模拟 阻抗特性 Laminar model Rod-pinch diode Numerical simulation Characteristic impedance
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参考文献11

  • 1Cooperstein G,Boller 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.
  • 2Cooperstein G.Status of particle beam and pulsed power research in the US[C]//Proc of the 14th International Conference on High Power Particle Beams.2002:3-8.
  • 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
  • 4Bayol F,Charre P,Garrigues A,et al.Evaluation of the rod-pinch diode as a high-resolution source for flash radiography at 2 to 4 MV[C]//IEEE International Conference on Pulsed Power Plasma Science.2001,1:450-453.
  • 5Machaffey R A,Golden J,Goldstein Shyke A,et al.Intense electron beam pinch formation and propagation in rod-pinch diodes[J].Appl Phys Lett,1978,33(9):795-797.
  • 6Cooperstein G,Boller J R,Commisso R J,et al.Rod-pinch diode development for short-pulse radiography using extended-length cathodes[C]//IEEE International Conference on Pulsed Power Plasma Science.2001,1:438-441.
  • 7Cooperstein G,Commisso R J,Hinshelwood D D,et al.Progress in rod-pinch electron beam diodes as intense X-ray radiography sources[C]//13th International Conference on High-Power Particle Beams.2000:162-167.
  • 8Rose D V,Welch D R,Oliver B V,et al.Particle-in-cell simulations of the triMeV rod-pinch electron-beam diode[R].SNAL quarterly report,2000:1-3.
  • 9Oliver B V,Genoni T C,Rose D V,et al.The impedance characteristics of a rod-pinch diode[C]//IEEE International Conference on Pulsed Power Plasma Science.2001,1:485-461.
  • 10Ottinger P F,Schumer J W,Strashurg S,et al.Vlasov model for the impedance of a rod-pinch diode[C]//IEEE International Conference on Pulsed Power Plasma Science.2003:987-990.

二级参考文献17

  • 1Ekdahl C. Modern electron accelerator for radiography[C]//Proceedings of the 13th International Pulsed Power Conference. 2001:29-34.
  • 2Cooperstein G, Status of particle beam and pulsed power research in the US[C]//Proceedings of the 14th International Conference on High Power Particle Beams. 2002:3-8.
  • 3Cooperstein 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.
  • 4Mahaffey R A, Golden J, Goldstein S A, et al. Intense electron-beam pinch formation and propagation in rod pinch diodes[J]. Appl Phys Lett, 1978, 33(9) :795-797.
  • 5Cooperstein G, Commisso R J, Hinshelwood D D, et al. Rod-pinch electron beam diodes as X-ray radiography sources[C]//Proceedings of the 12th International Conference on High Power Particle Beams. 1998:31-34.
  • 6Weidenheimer D M, Corcoran P, Altes R, et al. Design of a driver for the Cygnus X-ray source[C]//Proceedings of the 13th International Pulsed Power Conference. 2001:591-595.
  • 7Menge P R, Johnson D L, Maenchen J E, et al. Rod pinch radiography source optimization at 2.3 MV[C]//Proceedings of the 13th International Pulsed Power Conference. 2001:454-457.
  • 8Allen R J, Boiler J R, Commisso R J, et al. Adaptation of ASTERIX to positive polarity for 2 to 4 MV rod-pinch diode experiments and diode electrical analysis[C]//Proceedings of the 13th International Pulsed Power Conference. 2001:446-449.
  • 9Goldsack T J, Bryant T F, Beech P, et al. Multi-megavolt, multi-axis, high-resolution flash X-ray source development for a new hydrodynamics research facility at AWE Aldermaston[C]//Proceedings of the 13th International Pulsed Power Conference. 2001:388-392.
  • 10Weber B V, Cooperstein G, Hinshelwood D D, et al. The plasma-filled rod-pineh diode: a new technique to concentrate MeV electron beams to ultra-high power and energy densities[C]//Proceedings of the 14th International Conference on High Power Particle Beams.2002:191-194.

共引文献15

同被引文献37

  • 1夏连胜,王勐,黄子平,张开志,石金水,章林文,邓建军.强流电子二极管中阴极等离子体的膨胀[J].物理学报,2004,53(10):3435-3439. 被引量:26
  • 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杨海亮,邱爱慈,何小平,孙剑锋,汤俊萍,王海洋,李洪玉,黄建军,任书庆,杨莉.高功率离子束模拟材料的X射线热-力学效应研究[J].核技术,2005,28(1):24-29. 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
  • 5Cooperstein 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.
  • 6Robert 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.
  • 7John 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.
  • 8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.
  • 9Golden 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.
  • 10Young F C, Oliphant W F, Stephanakis S J, et al. Absolute calibration of a prompt gamma - ray detector for intense bursts of protons[J]. IEEE Trans Nucl Sci,1981 ,PS-9(1) :24 -29.

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