Skip to main content
Log in

Abstract

A coaxial waveguide gyro-peniotron with largeorbit beam is proposed. The linear thoery of 3-D model is given to describe this device. The influences of the beam radius and beam current on the normalized growth rate are discussed in terms of numerical analysis.

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.

Similar content being viewed by others

References

  1. Y. Y. Lau and L. R. Barnett, “Theory of a low magnetic field gyrotron (gyromagnetron),” Int. J. IR/MM Waves, Vol. 3 619–644, 1982.

    Google Scholar 

  2. D. B. McDermott, N. C. Jr. Luhmann, A. Kupiszewski, and H. R. Jory, “Small-signal theory of a largeorbit electron-cyclotron harmonics maser,” Phys. Fluids, Vol. 26, 1936–1941, 1983.

    Google Scholar 

  3. K. R. Chu and D. Dialetis, “Theory of harmonic gyrotron oscillator with slotted resonant structure,” Int. J. IR/MM Waves, Vol. 5, 37–56, 1984.

    Google Scholar 

  4. W. Namkung, “Observation of microwave generation from a cusptron device,” Phys. Fluids, Vol. 27, 329–330, 1984.

    Google Scholar 

  5. H. S. Uhm, C. M. Kim and W. Namkung, “Linear theory of cusptron microwave tubes,” Phys. Fluids, Vol. 27, 488–498, 1984.

    Google Scholar 

  6. S. N. Vlasov, L. I. Zagryadskaya and I. M. Orlova, “Open coaxial resonators for gyrotrons,” Radio Eng. & Electron. Phys., Vol. 21, 96–102, 1976.

    Google Scholar 

  7. W. W. Destler, H. Romero, C. D. Striffler, R. L. Weiler and W. Namkung, “Intense microwave generation from a non-neutral rotating E layer,” J. Appl. Phys., Vol. 52, 2740–2749, 1981.

    Google Scholar 

  8. S. Ono, K. Tsutaki and T. Kageyama, “Proposal of a high efficiency tube for high power millimeter or submillimeter wave generation—The gyropeniotron,” Int. J. Electron., Vol. 56, 507–519, 1984.

    Google Scholar 

  9. G. Döhler, “Peniotron interaction in gyrotron,” Int. J. Electron., Vol. 56, 617–640, 1984.

    Google Scholar 

  10. P. Vitello, “Cyclotron maser and peniotron-like instability in a wispering gallery mode gyrotron,” IEEE Trans. on MTT, Vol. 32, 917–921, 1984.

    Google Scholar 

  11. Shi-Chang Zhang, “Kinetic theory of traveling wave gyro-peniotron”, to be published in Int. J. IR/MM Waves, Vol. 6, no. 12, 1985.

Download references

Author information

Authors and Affiliations

Authors

Rights and permissions

Reprints and permissions

About this article

Cite this article

Zhang, SC. Coaxial waveguide gyro-peniotron. Int J Infrared Milli Waves 7, 869–880 (1986). https://doi.org/10.1007/BF01013033

Download citation

  • Received:

  • Issue Date:

  • DOI: https://doi.org/10.1007/BF01013033

Key Words

Navigation