Skip to main content
Log in

Linear Theory of Electron Dynamic for the Slowly Varied Section Waveguide Resonator with the TM Mode in a Hybrid-Magnicon

  • Published:
International Journal of Infrared and Millimeter Waves Aims and scope Submit manuscript

Abstract

Based on fundamental principles of magnicon, we posed hybrid-magnicon amplifier. It are adopted that beforehand axially modulating annular electron beam, a vertical cylindrical wave-guide opened driver cavity, a slowly varied section waveguide opened output cavity, whoever with TM-mode. Pass basic concept analysis of this new type tube that after consider who suitably make small power or MW pulsed tube with suitable wide-band. For example, if operate at the third harmonic then can reach 8% bandwidth. This paper expounded the linear theory for hybrid-magnicon. Use simply new method, which solve for Dispersion Equation. Give Dispersion Equation with the self-consistent effect and the space charge effect of the slowly varied section waveguide rotating TM-mode opened resonator cavity. Give the interact power between wave and electrons, et al.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Institutional subscriptions

Similar content being viewed by others

REFERENCE

  1. Zhang Hebi, The axial modulated cusp-injected slowly varied section opened cavity magnicon amplifier, Inter. J. IR/ MMW, Vol. 21,No.1, 2000.

  2. Zhang Hebi, A theory of the self-consistent and space charge effect in hybrid-magnicon amplifier, Inter. J. IR/ MMW, Vol. 21,No.2, 2000.

  3. W. Lawson, The axially modulated cusp-injected large-orbit gyrotron amplifier, IEEE Trans. PS.22, 1994.

  4. O. A. Nezhecenko, Gyrocons and Magnicons: Microwave Generators with Circular Deflection of the Electron Beam, IEEE Trans. Plasma sce. Vol. 22,No. 5, pp. 756-772, 1994.

    Google Scholar 

  5. Zhang Hebi, Analysis for the new type long-pulsed and high efficient magnicon, (1) Inter. J. Infrared & Millimeter Waves, V.18,No.6, pp.1381-1391, 1997. 6; (2) Vacuum electronics, (Chinese), No.5, (Series No.210), pp.6–11. 1997.

    Google Scholar 

  6. Zhang Hebi, The cold quality factor of magnicon on resonator in the rotating TMa10mode and compared with its equivalent for the static mode, (1) Inter. Confer. of Microwave & Millimeter Wave Technology, August 1998, in Beijing China, pp.528-530; (2) High power laser & particle beams, (Chinese), Vol.9, No.3, pp336–340, 1997.

  7. Liu Shenggang, Evolve of electron cyclotron maser & gyrotron, Advanced physics science research series, Chengdu, China, 1988.

  8. Liu Shenggang, Relativity electronics, Science publishing house, Beijing, April 1987.

    Google Scholar 

  9. Chu, K. R., Lau, Y. Y., et al., Theory of a Wide-Band Distributed Gyrotron Traveling Wave Amplifier, IEEE Trans., ED-28(7), 866-871, 1981.

    Google Scholar 

  10. H. S. Uhm, et al., Phys. Fluids, 1978, 21(10), 1866.

    Google Scholar 

  11. H. S. Uhm, et al., Phys. Fluids, 1978, 21(10), 1877.

    Google Scholar 

  12. K. R. Chu, J. L. Hirshifield, Phys. Fluids, 1978, 21(3), 461.

    Google Scholar 

  13. Zhonghai Yang, Chinese Journal of Electronics, 1982, (6), 17.

  14. A. W. Fliflet, Int. J. Electronics, 1986, 61(6), 1049-1080.

    Google Scholar 

  15. S. C. Zhang, Phys. Fluids B, 1(12), 1989, 2502-2506.

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Rights and permissions

Reprints and permissions

About this article

Cite this article

Zhang, H. Linear Theory of Electron Dynamic for the Slowly Varied Section Waveguide Resonator with the TM Mode in a Hybrid-Magnicon. International Journal of Infrared and Millimeter Waves 23, 765–774 (2002). https://doi.org/10.1023/A:1015718721043

Download citation

  • Issue Date:

  • DOI: https://doi.org/10.1023/A:1015718721043

Navigation