Anode Shape Dependency of Discharge Characteristics and Neutron Yield of a Linear Type Inertial Electrostatic Confinement Fusion Neutron Source

Author:

Itagaki Tomonobu1,Hotta Eiki1,Hasegawa Jun1,Takakura Kei1,Tabata Shinnosuke1,Matsueda Yasushi1

Affiliation:

1. Tokyo Institute of Technology

Publisher

Institute of Electrical Engineers of Japan (IEE Japan)

Subject

Electrical and Electronic Engineering

Reference25 articles.

1. (1) Y. B. Gu and G. H. Miley : “Biased probe for plasma diagnostics in spherical electrostatic inertial plasma confinement”, Rev. Sci. Instrum., Vol. 61, No. 10, pp. 2902-2904 (1990)

2. (2) G. H. Miley, J. Nadler, T. Hochberg, Y. Gu, O. Barnouin, and J. Lovberg : “Inertial-Electrostatic Confinement: An Approach to Burning Advanced Fuels”, Fusion Technol., Vol. 19, pp. 840-845 (1991)

3. (3) G. H. Miley, J. Javedani, Y. Yamamoto, R. Nebel, J. Nadler, Y. Gu, A. Satsangi, and P. Heck : “Inertial Electrostatic Confinement Neutron/Proton Source”, AIP Conf. Proc., Vol. 299, pp. 675-689 (1994)

4. (4) G. H. Miley, Y. Gu, J. M. DeMora, R. A. Stubbers, T. A. Hochberg, J. H. Nadler, and R. A. Anderl : “Discharge Characteristics of the Spherical Inertial Electrostatic Confinement (IEC) Device”, IEEE Trans. Plasma Sci., Vol. 25, No. 4, pp. 733-739 (1997-8)

5. (5) G. H. Miley, B. P. Bromley, and Y. Gu : “A novel IEC propulsion unit for satellite applications”, AIP Conf. Proc., Vol. 361, pp. 1435-1439 (1996)

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