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Technical Paper

A 28-GHz Quasi-Optical Electron Cyclotron Maser with an Axial Output Coupling Mirror

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Pages 364-376 | Published online: 09 May 2017

References

  • M. PORKOLAB, “Radio-Frequency Heating of Magnetically Confined Plasma,” Fusion, p. 156, E. TELLER, Ed., Academic Press, New York (1981).
  • A. C. RIVIERE, “Applications for Gyrotrons in Fusion Research,” Int. J. Electron., 61, 693 (1986).
  • R. PRATER, “Recent Results on the Application of Electron Cyclotron Heating to Tokamaks,” J. Fusion Energy, 9, 19 (1990).
  • K. FELCH, H. HUEY, and H. JORY, “Gyrotrons for ECH Applications,” J. Fusion Energy, 9, 59 (1990).
  • K. I. THOMASSEN, “Electron Cyclotron Wave Sources and Applications for Fusion,” J. Fusion Energy, 9, 1 (1990).
  • A. F. KURIN, Radio Eng. Electron. Phys. (USSR), 15, 1868 (1969).
  • F. A. KOROLEV and A. F. KURIN, Radio. Eng. Electron Phys. (USSR), 15, 1868 (1970).
  • K. E. KREISCHER and R. J. TEMKIN, “High-Frequency Gyrotrons and Their Application to Tokamak Plasma Heating,” Infrared and Millimeter Waves, Vol. 7, p. 309, Academic Press, London.
  • P. SPRANGLE, J. L. VOMVORIDIS, and W. M. MANHEIMER, “A Classical Electron Cyclotron Quasi-Optical Maser,” Appl. Phys. Lett., 38, 310 (1981).
  • A. PERRENOUD, M. Q. TRAN, C. RIEDER, M. SCHLEIPEN, and A. BONDESON, “Open Resonator for Quasi-Optical Gyrotrons: Structure of the Modes and Their Influence,” Int. J. Electron., 5, 985 (1984).
  • A. PERRENOUD, M. Q. TRAN, and B. ISAAK, “On the Design of Open Resonators for Quasi-Optical Gyrotrons,” J. Infrared Millimeter Waves, 7, 427 (1986). see also “Low Power Test of a Quasi-Optical Gyrotron with Stepped Mirrors,” Int. J. Electron., 7, 1813 (1986).
  • T. S. HARGREAVES, “Experimental Study of a Single-Mode Quasi-Optical Gyrotron,” Int. J. Electron., 57, 977 (1984).
  • M. E. READ, M. Q. TRAN, J. MCADOO, and M. BARSANTI, “Experimental Study of a 115 GHz Quasi-Optical Gyrotron,” Int. J. Infrared and Millimeter Waves, 7, 427 (1988).
  • A. W. FLIFLET, T. A. HARGREAVES, W. M. MANHEIMER, R. P. FISCHER, and M. L. BARSANTI, “Initial Operation of a High-Power Quasi-Optical Gyrotron,” IEEE Trans. Plasma Sci., 18, 306 (1990).
  • A. W. FLIFLET, T. A. HARGREAVES, W. M. MANHEIMER, R. P. FISCHER, M. L. BARSANTI, B. LEVUSH, and T. ANTONSEN, “Operating Characteristics of a Continuous-Wave-Relevant Quasi-Optical Gyrotron with Variable Mirror Separation,” Phys. Fluids B, 2, 1046 (1990).
  • T. A. HARGREAVES, A. W. FLIFLET, R. P. FISCHER, M. L. BARSANTI, W. M. MANHEIMER, B. LEVUSH, and T. ANTONSEN, “Tilted Resonator Experiments on a Quasioptical Gyrotron,” Int. J. Electron., 72, 807 (1992).
  • A. W. FLIFLET, T. A. HARGREAVES, R. P. FISCHER, W. M. MANHEIMER, and P. SPRANGLE, “Review of Quasi-Optical Gyrotron Development,” J. Fusion Energy, 9, 31 (1990).
  • S. ALBERTI et al., “Experimental Measurements on a lOOGHz Frequency Tunable Quasioptical Gyrotron,” Phys. Fluids B, 7, 1646 (1990).
  • E. C. MORSE and R. V. PYLE, “Summary Abstract: Operation of a Quasi-Optical Electron Cyclotron Maser,” J. Vac. Sci. Technol., 3, 1239 (1985).
  • R. K. WONG and E. C. MORSE, “Study of a Quasi-Optical Electron Cyclotron Maser with Output Coupling Mirrors,” Int. J. Electron., 69, 291 (1990).
  • J. P. VERBONCOEUR, “Photon Drag Detector for mm-Wave Radiation in MTX,” MS Thesis, Department of Nuclear Engineering, University of California, Berkeley (1987).
  • A. G. FOX and T. LI, “Resonant Modes in an Optical Maser,” Bell Syst. Tech. J., 40, 453 (1961).
  • T. LI and H. ZUCKER, “Modes of a Fabry-Perot Laser Resonator with Output Coupling Apertures,” J. Opt. Soc. Am., 57, 984 (1967).
  • D. E. McCUMBER, “Eigenmodes of an Asymmetric Cylindrical Confocal Laser Resonator with a Single Output-Coupling Aperture,” Bell Syst. Tech. J., 48, 1919 (1969).
  • J. MORAN, “Coupling of Power from a Circular Confocal Laser with an Output Aperture,” IEEE J. Quantum Electron., 6, 93 (1970).
  • M. TSUJI, H. SHIGESAWA, and K. TAKIYAMA, “Eigenvalues of a Nonconfocal Laser Resonator with an Output-Coupling Aperture,” Appl. Opt., 18, 1334 (1979).
  • T. S. HARGREAVES, R. P. FISCHER, and R. B. MCGOWAN, “Ohmic Effects in Quasioptical Resonators,” Memorandum Report No. 6726, p. 9, Naval Research Laboratory (Oct. 1990).
  • G. D. BOYD and H. KOGELNIK, “Generalized Confocal Resonator Theory,” Bell Syst. Tech. J., 41, 1347 (1962).
  • S. F. ADAM, Microwave Theory and Applications, p. 269, Prenctice-Hall, Englewood Cliffs, New Jersey (1969).

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