Study of Eigenmodes of Coaxial Resonators Using Coupled-Wave Theory
Author:
Publisher
Springer Science and Business Media LLC
Subject
Electrical and Electronic Engineering,Condensed Matter Physics,Instrumentation,Radiation
Link
http://link.springer.com/content/pdf/10.1007/s10762-010-9663-7.pdf
Reference13 articles.
1. B. Piosczyk, A. Arnold, G. Dammertz et al., “Coaxial Cavity Gyrotron-Recent Experimental Results,” IEEE Trans. on Plasma Science 30 (3), 819–827 (2002).
2. O. Dumbrajs, G.S. Nusinovich, “Coaxial Gyrotrons: Past, Present, and Future(Review),” IEEE Trans. on Plasma Science 32 (3), 934–946 (2004).
3. E. Borie, O. Dumbrajs, “Calculation of eigenmodes of tapered gyrotron resonators,” International Journal of Electron, 60(2), 143–154 (1986).
4. A. W. Fliflet, R. C. Lee, M. E. Read, “ Self-consistent field model for the complex cavity gyrotron,” International Journal of Electron, 65(3), 273–283 (1988).
5. O. Dumbrajs, E. Borie, “A complex cavity with mode conversion for gyrotrons,” International Journal of Electron, 65(3), 285–295 (1988).
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1. Numerical Study of Interaction Efficiency for a 170GHz Megawatt‐Level Coaxial‐Gyrotron;Chinese Journal of Electronics;2016-09
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