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Recent progress of studies on intense particle beam at Nagaoka—ETIGO Project

Published online by Cambridge University Press:  09 March 2009

Kiyoshi Yatsui
Affiliation:
Laboratory of Beam Technology, The Technological University of Nagaoka, Nagaoka, Niigata 940-21, Japan
Yutaka Shimotori
Affiliation:
Laboratory of Beam Technology, The Technological University of Nagaoka, Nagaoka, Niigata 940-21, Japan
Mitsugu Ikeda
Affiliation:
Laboratory of Beam Technology, The Technological University of Nagaoka, Nagaoka, Niigata 940-21, Japan
Akira Takahashi
Affiliation:
Laboratory of Beam Technology, The Technological University of Nagaoka, Nagaoka, Niigata 940-21, Japan
Tsutomu Tanabe
Affiliation:
Laboratory of Beam Technology, The Technological University of Nagaoka, Nagaoka, Niigata 940-21, Japan
Keigo Aga
Affiliation:
Laboratory of Beam Technology, The Technological University of Nagaoka, Nagaoka, Niigata 940-21, Japan
Akifumi Kanai
Affiliation:
Laboratory of Beam Technology, The Technological University of Nagaoka, Nagaoka, Niigata 940-21, Japan
Yuhzo Araki
Affiliation:
Laboratory of Beam Technology, The Technological University of Nagaoka, Nagaoka, Niigata 940-21, Japan
Katsumi Masugata
Affiliation:
Laboratory of Beam Technology, The Technological University of Nagaoka, Nagaoka, Niigata 940-21, Japan
Shigeo Kawata
Affiliation:
Laboratory of Beam Technology, The Technological University of Nagaoka, Nagaoka, Niigata 940-21, Japan
Minoru Murayama
Affiliation:
Laboratory of Beam Technology, The Technological University of Nagaoka, Nagaoka, Niigata 940-21, Japan

Abstract

Recent experimental and theoretical research on intense pulsed particle beams involving the ETIGO Project at the Technological University of Nagaoka is reviewed. Experimentally, we review the following: (1) studies on local divergence angle in parameter space, (2) development of self-magnetically insulated “Plasma-Focus Diode,” (3) beam focusing by z-discharged plasma channel, (3) measurement of ablation process of beam-target interaction, (4) time-resolvable measurement of energy and species, (5) inductive postacceleration of highly neutralized ion beam, (6) construction of new pulse-power machine, and pulse-compression experiment by plasma erosion opening switch. A brief summary is also given on the development of 2.5-dimensional particle-in-cell computer simulation code.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1987

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References

Antonsen, T. M. et al. 1976 Phys. Fluids 19, 52.CrossRefGoogle Scholar
Bluhm, H. et al. 1982 Research Report of Cornell University, LPS-304.Google Scholar
Camarcat, N. et al. 1984 Rev. Sci. Instrum. 55, 1425.CrossRefGoogle Scholar
Cooperstein, G. et al. 1982 Proc. Int'l Top. Mtg. on ICF Res. by Light-Ion Beam,Nagaoka,Nagoya Univ. (K. Yatsui, ed.) IPPJ-611, 1.Google Scholar
Creedon, J. M. 1977 J. Appl. Phys. 48, 1070.CrossRefGoogle Scholar
Ikeda, M. et al. 1986 Proc. Top. Mtg. on Particle-Beam Fusion and Its Related Problems,Nagoya Univ. (K. Niu, ed.) IPPJ-769 (2), 305.Google Scholar
Johnson, D. J. et al. 1979 J. Appl. Phys. 50, 4524.CrossRefGoogle Scholar
Johnson, D. J. et al. 1983 J. Appl. Phys. 54, 2230.CrossRefGoogle Scholar
Kawata, S. et al. 1983 Jpn. J. Appl. Phys. 22, 302.CrossRefGoogle Scholar
Kawata, S. et al. 1985 Proc. Collab. Res. Mtg. on Development and Applications of High Power Particle Beams,Nagoya Univ., (K. Yatsui, ed.) IPPJ-742, 149.Google Scholar
Kawata, S. et al. 1986a Res. Rep. Karlsruhe #14.04.01P44A.Google Scholar
Kawata, S. et al. 1986b Proc. 2nd Int'l Top. Symp. on ICF Res. by High-Power Particle Beams,Nagaoka (K. Yatsui, ed.) 402.Google Scholar
Masugata, K. et al. 1981 Jpn. J. Appl. Phys. 20, L347.CrossRefGoogle Scholar
Masugata, K. et al. 1984 Bull. Amer. Phys. Soc. 29, 1292.Google Scholar
Masugata, K. et al. 1986 Proc. 6th Int'l Conf. on High-Power Particle Beams,Kobe (C. Yamanaka, ed.) 152.Google Scholar
Matsuzawa, T. et al. 1985 Rev. Sci. Instrum. 56, 2279.CrossRefGoogle Scholar
Murayama, M. et al. 1986a Proc. Top. Mtg. on Particle-Beam Fusion and Its Related Problems,Nagoya Univ. (K. Niu, ed.) IPPJ-769 (2), 293.Google Scholar
Murayama, M. et al. 1986b Proc. 6th Int'l Conf. on High Power Particle Beams,Kobe (C. Yamanaka, ed.) 303.Google Scholar
Okada, T. et al. 1980 J. Phys. Soc. Jpn.. 52, 385.Google Scholar
Quintenz, J. P. et al. 1978 J. Appl. Phys.. 49, 4377.CrossRefGoogle Scholar
Sai, E. et al. 1985 Proc. Collab. Res. Mtg. on Development and Applications of High-Power Particle Beams,Nagoya Univ. (K. Yatsui, ed.) IPPJ-742, 69.Google Scholar
Shimotori, Y. et al. 1986a Proc. Top. Mtg. on Particle-Beam Fusion and Its Related Problems,Nagoya Univ. (K. Niu, ed.) IPPJ-769 (2), 267.Google Scholar
Shimotori, Y. et al. 1986b Proc. 6th Int'l Conf. on High-Power Particle Beams,Kobe (C. Yamanaka, ed.) 97.Google Scholar
Takahashi, A. et al. 1986 Proc. Top. Mtg. on Particle-Beam Fusion and Its Related Problems,Nagoya Univ. (K. Niu, ed.) IPPJ-769 (2), 282.Google Scholar
Tanabe, T. et al. 1986 Phys. Rev. Letters 56, 831.CrossRefGoogle Scholar
Tanaka, H. et al. 1982 Jpn. J. Appl. Phys. 21, L647.Google Scholar
Tokuchi, A. et al. 1986a Proc. 2nd Int'l Top. Symp. on ICF Res. by High-Power Particle Beams,Nagaoka (K. Yatsui, ed.) 430.Google Scholar
Yatsui, K. et al. 1985 Laser and Particle Beams, 3, 119.CrossRefGoogle Scholar
Yatsui, K. et al. 1986a Proc. 2nd Int'l Top. Symp. on ICF Res. by High-Power Particle Beams,Nagaoka (K. Yatsui, ed.) 1.Google Scholar
Yatsui, K. et al. 1986b Proc. 6th Int'l Conf. on High-Power Particle Beams,Kobe (C. Yamanaka, ed.) 329.Google Scholar