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Operating point of long magnetically insulated vacuum transmission lines
1.I. D. Smith, in Proceedings of the First International Topical Conference on Electron Beam Research and Technology (1976) Vol. 1, pp. 472–489.
2.Temporal compression also occurs in MITL’s due to loss front. However, it is not the main purpose of MITL’s.
3.E. I. Baranchikov, A. V. Gordeev, V. D. Korolev, and V. P. Smirnov, in Proceedings of the Second International Topical Conference on High Power Electron and Ion Beam Research and Technology (Lab. Plasma Studies, Cornell University, 1977), pp. 3–21.
4.J. M. Creedon, J. Appl. Phys. 46, 2946 (1975).
5.M. Wang and M. S. Di Capua, Tech. 8400–04, Physics International Company, 1978 (unpublished).
6.A. V. Gordeev, Preprint IAE‐3076, I. V. Kurchatov Institute of Atomic Energy, 1978. Minimum energy criterion was postulated independently in Refs. 4 and 5.
7.A. Bers and P. Penfield, Trans. IRE ED‐9, 12 (1962).
8.M. Di Capua, D. G. Pellinen, P. D’A. Champney, and D. McDaniel, in Proceedings of the Second International Topical Conference on High Power Electron and Ion Beam Research and Technology (Lab. Plasma Studies, Cornell University, 1977), pp. 781–92.
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12.K. D. Bergeron, J. W. Poukey, M. Di Capua, and D. G. Pellinen, Proc. 8th Int. Symp. on Disch. and Electrical Ins. in Vac, pp. E2‐1‐E2‐16, SAND 78‐1145C, Sandia Laboratories, Albuquerque, N. M., 1978.
13.M. Di Capua and D. G. Pellinen, PIFR‐1009, Physics International Company, 1978; Triplate Geometry with Negative Inner Conductor (unpublished).
14.Coax with Positive Conductor in Ref. 12.
15.J. P. VanDevender, J. Appl. Phys. 50, 3928 (1979).
16.K. D. Bergeron, J. Appl. Phys. 48, 3065 (1977).
17.Because of this assumption, the equations are implicitly dependent on time.
18.Now at Shugart Associates, a division of Xerox, Sunnyvale, Calif.
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