Matter and Radiation at Extremes, 2018, 3 (6): 278, Published Online: Mar. 14, 2019   

Compact intense electron-beam accelerators based on high energy density liquid pulse forming lines

Author Affiliations
1 College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, People's Republic of China
2 State Key Laboratory of Pulsed Power Laser Technology, National University of Defense Technology, Changsha 410073, People's Republic of China
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Jianhua Yang, Zicheng Zhang, Hanwu Yang, Jun Zhang, Jinliang Liu, Yi Yin, Tao Xun, Xinbing Cheng, Yuwei Fan, Zhenxing Jin, Jinchuan Ju. Compact intense electron-beam accelerators based on high energy density liquid pulse forming lines[J]. Matter and Radiation at Extremes, 2018, 3(6): 278.

References

[1] J. Benford, J. Swegle, E. Schamiloglu, High Power Microwaves, 2nd, CRC Press, New York, 2007.

[2] S.D. Korovin, V.V. Rostov, High-current nanosecond pulse-periodic electron accelerators utilizing a tesla transformer, Russ. Phys. J. 139 (12) (1996) 1177-1185.

[3] X.X. Song, G.Z. Liu, J.C. Peng, J.C. Su, L.M. Wang, et al., A repetitive high-current pulsed acceleratordTPG700, in: IEEE International Conference on High Power Particle Beams, 2008, pp. 1-5.

[4] Y.H. Zhang, A.B. Chang, F. Xiang, F.L. Song, Q. Kang, et al., Repetition rate of intense current electron-beam diodes using 20 GW pulsed source, Chin. Phys. Soc. 56 (10) (2007) 5754-5757.

[5] C.L. Li, L.G. Shen, C.H. Liu, C.Y. Liu, Q.L. Zhang, et al., The 81-7M-01 intense relativistic electron beam accelerator, J. Natl. Univ. Def. Technol. 15 (sl) (1993) 1-10.

[6] L.G. Shen, C.L. Li, Y.P. He, The Calculation of the charging voltage waveform and pre-pulse voltagewaveformproduced by theMarx generator charging Blumlein line, J. Natl. Univ. Def. Technol. 15 (sl) (1993) 23-32.

[7] L.G. Shen, C.L. Li, Y.G. Liu, 81-7M-01–A two-beams accelerator, in: IEEE International Pulsed Power Conference Digest of Technical Papers, 1, 1997, pp. 355-360.

[8] C.L. Li, X.Y. Peng, Y.G. Liu, The mode analysis of the cylindrical cavity in a virtual cathode oscillator (vircator), J. Natl. Univ. Def. Technol. 15 (sl) (1993) 62-70.

[9] H.H. Zhong, C.L. Li, Y.G. Liu, Study on high power microwave produced by virtual cathode oscillator(vircator), J. Natl. Univ. Def. Technol. 17 (sl) (1995) 66-69.

[10] B.L. Qian, Y.G. Liu, C.L. Li, C.B. Liu, Two-dimensional analysis of the relativistic parapotential electron flow in a magnetically insulated transmission line oscillator (MILO), IEEE Trans. Plasma Sci. 28 (2000) 760-766.

[11] Y.W. Fan, Research on Magnetically Insulated Transmission Line Oscillator and its Related Technology, National University of Defense Technology, 2008. Doctoral Dissertation.

[12] T. Shu, Z.Q. Li, C.W. Yuan, J.H. Yang, L.R. Xu, et al., Experiment on vircator operated in TM01 mode, High Power Laser Part Beams 17 (8) (2005) 1163-1166.

[13] J.H. Yang, D.Q. Chen, J.D. Zhang, J.L. Liu, S.G. Cao, et al., Electrocircuit simulation and experimental studies of PFL charged by MFCG, High Power Laser Part Beams 16 (4) (2004) 496-500.

[14] J.H. Yang, H.W. Yang, Z.Q. Li, T. Shu, J.D. Zhang, et al., Pre-pulse phenomena in pulse forming line charging-up by long pulse energy sources through a transformer, High Power Laser Part Beams 16 (7)(2004) 900-904.

[15] X.S. Liu, High Power Pulse Technology, National Defense Industry Press, 2005.

[16] L.G. Shen, Introduction of Pulse Power Technology, National University of Defense Technology, 1989.

[17] H. Yang, J. Xu, J. Zhang, H. Zhong, Y. Wang, et al., Experiments of a 30 GW, 100 ns compact e-beam accelerator, in: IET European Pulsed Power Conference, 2009, pp. 1-4.

[18] Y.W. Fan, X.Y. Wang, L. He, H.H. Zhong, J.D. Zhang, A tunable magnetically insulated transmission line oscillator, Chin. Phys. B 24 (3) (2015) 035203.

[19] J.H. Yang, H.H. Zhong, T. Shu, J.D. Zhang, J. Zhang, Research on a long-pulse intense electron beam repetitive accelerator, in: 2nd China Pulse Power Conference, 2011.

[20] J.H. Yang, H.H. Zhong, T. Shu, J.D. Zhang, J. Zhang, et al., Research on an intense electron beam repetitive accelerator based on super-capacitors, in: 3rd China Pulse Power Conference, 2013.

[21] S.T. Pai, Q. Zhang, Advance series in electrical and computer engineering, in: Introduction to High Power Pulse Technology, vol. 10, World Scientific Publishing Co., 2015.

[22] J.H. Yang, J.M. Gao, T. Shu, H.F. Luo, J.J. Lin, A novel compact double pulse forming lines, Rev. Sci. Instrum. 84 (6) (2013) 064706.

[23] J.Y. Geng, J.H. Yang, X.B. Cheng, X. Yang, R. Chen, The development of high-voltage repetitive low - jitter corona stabilized triggered switch, Rev. Sci. Instrum. (2018).

[24] Z.C. Zhang, J.D. Zhang, J.H. Yang, Influence of low speed rolling movement on high electrical break down for water dielectric with microsecond charging, Plasma Sci. Technol. 8 (2) (2006) 195-197.

[25] Z.C. Zhang, J.D. Zhang, J.H. Yang, Experimental study on high electrical breakdown of water dielectric, Plasma Sci. Technol 7 (6) (2005) 3161-3165.

[26] Z.C. Zhang, J.H. Yang, J.D. Zhang, J.L. Liu, J.F. Pu, et al., Investigation of high electrical breakdown for pressurized water dielectric with microsecond charging, High Power Laser Part Beams 17 (5) (2005) 761-764.

[27] Z. Zhang, J. Yang, J. Zhang, X. Zhou, Influence of polished surface of electrodes on high electrical breakdown in pressurized water dielectric, High. Volt. Eng. 31 (10) (2005) 52-54.

[28] J.H. Yang, H.M. Ren, J.M. Gao, J. Wen, Z. Xiang, et al., Experimental study on the electric characteristics of the deionized water and its mixture with ethylene glycol in tens microsecond regime and its application, in: IEEE International Conference on Dielectric Liquids, 2011.

[29] X. Yang, J.H. Yang, X.B. Cheng, J.J. Lin, H.B. Zhang, Investigation of the magnetic field space-time distribution in the air-core pulse transformer, in: Progress in Electromagnetics Research Symposium, 2014.

[30] X. Yang, Study on the Effects of Magnetic Field and Electrode on the Breakdown of Glycerin, National University of Defense Technology, 2014. Dissertation.

[31] Y.Z. Shao, J.H. Yang, X.B. Cheng, Study on coaxial spiral Blumlein output waveform optimization, in: 4th China Pulse Power Conference, 2015.

[32] Y. Yin, T.Y. Zhang, Z.Q. Li, J.H. Yang, Y.F. Min, et al., Investigation of a 100kV compact resonance high power charging system, in: 5th China Pulse Power Conference, 2017, pp. 385-389.

[33] J.H. Yang, T. Shu, J.D. Zhang, H.M. Ren, X. Zhou, et al., Charging process of pulse forming line with capacitor through transformer, High Power Laser Part Beams 22 (11) (2010) 2783-2788.

[34] J.H. Yang, H.H. Zhong, T. Shu, J.D. Zhang, J.M. Gao, et al., Investigation of repetitive operation of pulse generator driven by storage energy, Chin. Nucl. Soc. (2009), 03-H01-0020.

[35] J.L. Liu, J.D. Zhang, Y.Z. Li, J.J. Li, J.H. Feng, High voltage pulse transformer for PFL charging, High Power Laser Part Beams 15 (4) (2003) 394-396.

[36] Z. Zhang, H. Yang, J. Yang, D. Chen, Compact megavolt pulse transformer with inner magnetic core and conical secondary windings, in: IEEE Pulsed Power Conference, 2015, pp. 1-5.

[37] J.H. Yang, H.H. Zhong, T. Shu, J.D. Zhang, J.L. Liu, et al., Waterdielectric Blumlein type of PFL with spiral line, High Power Laser Part Beams 17 (8) (2005) 1191-1194.

[38] J. Liu, Y. Yin, B. Ge, X. Cheng, J. Feng, et al., A compact high power pulsed modulator based on spiral Blumlein line, Rev. Sci. Instrum. 78 (10) (2007) 103302.

[39] J. Lin, J. Yang, J. Zhang, X. Chen, An all solid-state high-voltage ns trigger generator based on magnetic pulse compression and transmission line transformer, Rev. Sci. Instrum. 84 (9) (2013) 093306.

[40] J. Lin, J. Zhang, J. Yang, H. Zhang, Y. Qiu, et al., Jitter characteristic of series magnetic pulse compressor employed in ns trigger generator, Rev. Sci. Instrum. 85 (5) (2014), 053302.

[41] J. Lin, J. Yang, J. Zhang, H. Zhang, Slightly uneven electric field trigatron employed in tens of microseconds charging time, Rev. Sci. Instrum. 85 (9) (2014) 963-976.

[42] J. Chen, J.H. Yang, T. Shu, J.D. Zhang, X. Zhou, et al., Primary power supply of repetitive pulse intense current accelerator charged by capacitance of energy store, High Power Laser Part Beams 20 (8) (2008) 1405-1408.

[43] Y. Qiu, J. Liu, J. Yang, X. Cheng, X. Yang, A compact control system to achieve stable voltage and low jitter trigger for repetitive intense electron-beam accelerator based on resonant charging, AIP Adv. 7 (8) (2017) 085223.

[44] T. Xun, H. Yang, J. Zhang, Z. Zhang, Effects of vacuum pressures on the performance of a velvet cathode under repetitive high-current pulse discharges, Vacuum 85 (2) (2010) 322-326.

[45] Z. Jin, J. Zhang, J. Yang, H. Zhong, B. Qian, et al., A repetitive S-band long-pulse relativistic backward-wave oscillator, Rev. Sci. Instrum. 82 (8) (2011) 255.

[46] Y.W. Fan, T. Shu, Y.Wang, Z.Q. Li, J.J. Zhou, et al., Experimental design of a compact L-band magnetically insulated transmission line oscillator, High Power Laser Part Beams 65 (3) (2004) 938-940.

[47] Y.W. Fan, C.W. Yuan, H.H. Zhong, T. Shu, J.D. Zhang, et al., Experimental investigation of an improved MILO, IEEE Trans. Plasma Sci. 35 (4) (2007) 1075-1080.

[48] Y.W. Fan, H.H. Zhong, H.W. Yang, Z.Q. Li, T. Shu, et al., Analysis and improvement of an X-band magnetically insulated transmission line oscillator, J. Appl. Phys. 103 (12) (2008) 3436.

[49] Y.W. Fan, C.W. Yuan, H.H. Zhong, T. Shu, L. Luo, Simulation investigation of an improved MILO, IEEE Trans. Plasma Sci. 35 (2) (2007) 379-383.

[50] Y.W. Fan, X.Y. Wang, Z.C. Zhang, T. Xun, H.W. Yang, A high-efficiency repetitively pulsed magnetically insulated transmission line oscillator, Vacuum 128 (2016) 39-44.

[51] J. Zhang, H.H. Zhong, Z. Jin, T. Shu, S. Cao, et al., Studies on efficient operation of an X-band oversized slow-wave HPM generator in low magnetic field, IEEE Trans. Plasma Sci. 37 (8) (2009) 1552-1557.

[52] J. Zhang, Z.X. Jin, J.H. Yang, H.H. Zhong, T. Shu, et al., Recent advance in long-pulse HPM sources with repetitive operation in S-, C-, and XBands, IEEE Trans. Plasma Sci. 39 (6) (2011) 1438-1445.

[53] X. Ge, H. Zhong, B. Qian, J. Zhang, L. Gao, et al., An L-band coaxial relativistic backward wave oscillator with mechanical frequency tunability, Appl. Phys. Lett. 97 (10) (2010) 491.

[54] G. Li, T. Shu, J. Zhang, J. Yang, C. Yuan, Generation of gigawatt level beat waves, Appl. Phys. Lett. 96 (23) (2010) 1001.

[55] Z. Qi, J. Zhang, H. Zhong, Q. Zhang, D. Zhu, An improved suppression method of the transverse-electromagnetic mode leakage with two reflectors in the triaxial klystron amplifier, Phys. Plasmas 21 (7) (2014) 3724.

[56] J. Ju, J. Zhang, T. Shu, H. Zhong, An improved X-band triaxial klystron amplifier for gigawatt long-pulse high power microwave generation, IEEE Electron. Device Lett. (2017) 99.

[57] J. Ju, J. Zhang, Z. Qi, J. Yang, T. Shu, et al., Towards coherent combining of X-band high power microwaves: phase-locked long pulse radiations by a relativistic triaxial klystron amplifier, Sci. Rep. 6 (2016) 30657.

Jianhua Yang, Zicheng Zhang, Hanwu Yang, Jun Zhang, Jinliang Liu, Yi Yin, Tao Xun, Xinbing Cheng, Yuwei Fan, Zhenxing Jin, Jinchuan Ju. Compact intense electron-beam accelerators based on high energy density liquid pulse forming lines[J]. Matter and Radiation at Extremes, 2018, 3(6): 278.

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