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Transverse oscillations in a partially compensated electron beam

Transverse oscillations in a partially compensated electron beam LITERATURE CITED I. G. Vallis, K. Zauer, et al., "The injection of hlgh-current relativistic electron beams into plasma and gas,', Usp. Fiz. Nauk, 113, No. 3 (1974). 2. B.N. Breizman (BreJzman) and D. D. Ryutov, "Powerful relativistic electron beams in a plasma and in a vacuum (theory)," Nucl. Fusion, 14, 873-907 (1974). 3. V.P. Ii'in, Numerical Methods for Solution of Electrooptical Problems [in Russian], Nauka, Novosiblrsk (1974). 4. J.W. Poukey, J. R. Feeeman, and G. Yonas, "Simulation of relativistic electron beam diodes," J. Vac. Sci. Technol., 10, No. 6 (1973). 5. A.A. Kolomenskil and M. A. Novitskli, '~ two-dimensional model of the propagation of a high-current electron beam and the acceleration of ions from a gas," Zh. Tekh. Fiz., 46, No. 1 (1976). 6. J.P. Boris, "Relativistic plasma simulation--optimization Of a hybrid code," in: Fourth Conf. on Numerical Simulation of Plasmas, Washington (1970). 7. V.A. Vshivkov, "Numerical simulation of a relativistic electron beam," Chislennye Metody Mekh. Sploshnoi Sredy, i0, No. 2 (1979). 8. D.D. Ryutov, "The critical vacuum current of relativistic electron beams," Zh. Tekh. Fiz., 47, No. 4 (1977). A. S. Chikhachev UDC 533.9 Discussion of the motion of not only electrons but also ions of a beam http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Journal of Applied Mechanics and Technical Physics Springer Journals

Transverse oscillations in a partially compensated electron beam

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References (8)

Publisher
Springer Journals
Copyright
Copyright
Subject
Physics; Classical Mechanics; Fluid- and Aerodynamics; Classical and Continuum Physics; Applications of Mathematics; Mathematical Modeling and Industrial Mathematics; Mechanical Engineering
ISSN
0021-8944
eISSN
1573-8620
DOI
10.1007/BF00911562
Publisher site
See Article on Publisher Site

Abstract

LITERATURE CITED I. G. Vallis, K. Zauer, et al., "The injection of hlgh-current relativistic electron beams into plasma and gas,', Usp. Fiz. Nauk, 113, No. 3 (1974). 2. B.N. Breizman (BreJzman) and D. D. Ryutov, "Powerful relativistic electron beams in a plasma and in a vacuum (theory)," Nucl. Fusion, 14, 873-907 (1974). 3. V.P. Ii'in, Numerical Methods for Solution of Electrooptical Problems [in Russian], Nauka, Novosiblrsk (1974). 4. J.W. Poukey, J. R. Feeeman, and G. Yonas, "Simulation of relativistic electron beam diodes," J. Vac. Sci. Technol., 10, No. 6 (1973). 5. A.A. Kolomenskil and M. A. Novitskli, '~ two-dimensional model of the propagation of a high-current electron beam and the acceleration of ions from a gas," Zh. Tekh. Fiz., 46, No. 1 (1976). 6. J.P. Boris, "Relativistic plasma simulation--optimization Of a hybrid code," in: Fourth Conf. on Numerical Simulation of Plasmas, Washington (1970). 7. V.A. Vshivkov, "Numerical simulation of a relativistic electron beam," Chislennye Metody Mekh. Sploshnoi Sredy, i0, No. 2 (1979). 8. D.D. Ryutov, "The critical vacuum current of relativistic electron beams," Zh. Tekh. Fiz., 47, No. 4 (1977). A. S. Chikhachev UDC 533.9 Discussion of the motion of not only electrons but also ions of a beam

Journal

Journal of Applied Mechanics and Technical PhysicsSpringer Journals

Published: Dec 15, 2004

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