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1
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0016961157
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The gyrotron
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V. A. Flyagin, A. V. Gaponov, M. I. Petelin, and V. K. Yulpatov, “The gyrotron,” IEEE Trans. Microwave Theory Tech., Vol. MTT-25, pp. 514–521, 1977.
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IEEE Trans. Microwave Theory Tech.
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Flyagin, V.A.1
Gaponov, A.V.2
Petelin, M.I.3
Yulpatov, V.K.4
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3
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0018065423
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The gyro-tron; High power source of millimetre and submillimetre waves
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Dec. Usov, and V. K. Yulpatov
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A. A. Andronov, V. A. Flyagin, A. V. Gaponov, A. L. Gol’den-berg, berg, M. I. Petelin, V. G. Usov, and V. K. Yulpatov, “The gyro-tron; tron; High power source of millimetre and submillimetre waves,” Infrared Phys., Vol. 18, pp. 385–394, Dec. 1978.
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Infrared Phys.
, vol.18
, pp. 385-394
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Andronov, A.A.1
Flyagin, V.A.2
Gaponov, A.V.3
Golden-berg, A.L.4
berg, M.I.5
Petelin, V.G.6
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4
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84932437733
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Gyrotron developments
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Aug.
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H. Jory, S. Hegji, J. Shively, and R. Symons, “Gyrotron developments,” Microwave J., Vol. 21, pp. 30–34, Aug. 1978.
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Microwave J.
, vol.21
, pp. 30-34
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Jory, H.1
Hegji, S.2
Shively, J.3
Symons, R.4
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5
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0018705348
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Operating characteristics of a 35 GHz gyromonotron
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Dec.
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M. Read, R. M. Gilgenbach, A. J. Du das, R. Lucey, K. R. Chu, and V. L. Granatstein, “Operating characteristics of a 35 GHz gyromonotron,” in 1979 IEDM Tech. Dig., pp. 172–174, Dec. 1979.
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(1979)
1979 IEDM Tech. Dig.
, pp. 172-174
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Read, M.1
Gilgenbach, R.M.2
Dudas, A.J.3
Lucey, R.4
Chu, K.R.5
Granatstein, V.L.6
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6
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0016483838
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Theory of microwave emission by velocity-space instabilities of an intense relativistic electron beam
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Mar.
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E. Ott and W. M. Manheimer, “Theory of microwave emission by velocity-space instabilities of an intense relativistic electron beam,” IEEE Trans. Plasma Sci., Vol. PS-3, pp. 1–5, Mar. 1975.
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(1975)
IEEE Trans. Plasma Sci.
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, pp. 1-5
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Ott, E.1
Manheimer, W.M.2
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7
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0016960937
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The linear and self-consistent nonlinear theory of the electron cyclotron maser instability
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June
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P. Sprangle and A. Drobot, “The linear and self-consistent nonlinear theory of the electron cyclotron maser instability,” IEEE Trans. Microwave Theory Tech., Vol. MTT-25, pp. 528–544, June 1977;
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(1977)
IEEE Trans. Microwave Theory Tech.
, vol.MTT-25
, pp. 528-544
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Sprangle, P.1
Drobot, A.2
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8
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0001354123
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Coherent nonlinear theory of a cyclotron instability
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Feb.
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P. Sprangle and W. M. Manheimer, “Coherent nonlinear theory of a cyclotron instability,” Phys. Fluids, Vol. 18, pp. 224–230, Feb. 1975.
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(1975)
Phys. Fluids 18 224 230
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Sprangle, P.1
Manheimer, W.M.2
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9
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0018430352
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Characteristics and optimum operating parameters of a gyrotron traveling wave amplifier
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Feb.
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K. R. Chu, A. T. Drobot, V. L. Granatstein, and J. L. Seftor, “Characteristics and optimum operating parameters of a gyrotron traveling wave amplifier,” IEEE Trans. Microwave Theory Tech., Vol. MTT-27, pp. 178–187, Feb. 1979.
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(1979)
IEEE Trans. Microwave Theory Tech.
, vol.MTT-27
, pp. 178-187
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Chu, K.R.1
Drobot, A.T.2
Granatstein, V.L.3
Seftor, J.L.4
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10
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84939041864
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Theory and single wave simulation of the gyrotron travelling wave amplifier operating at cyclo-tron harmonics
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Aug. (unpublished).
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K. R. Chu and A. T. Drobot, “Theory and single wave simulation of the gyrotron travelling wave amplifier operating at cyclo-tron harmonics,” Naval Research Lab. Memo. Rep. 3788, Aug. 1978 (unpublished).
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(1978)
Naval Research Lab. Memo. Rep
, pp. 3788
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Chu, K.R.1
Drobot, A.T.2
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11
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1942462639
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Self-consistent theory of cyclotron maser instability for intense hollow electron beams
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H. Uhm, R. C. Davidson, and K. R. Chu, “Self-consistent theory of cyclotron maser instability for intense hollow electron beams,” Phys. Fluids, p. 1866, 1978.
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(1978)
Phys. Fluids
, pp. 1866
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Uhm, H.1
Davidson, R.C.2
Chu, K.R.3
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12
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0001183158
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Cyclotron maser instability for general magnetic harmonic number
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“Cyclotron maser instability for general magnetic harmonic number,” Phys. Fluids, p. 1877, 1978.
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(1978)
Phys. Fluids
, pp. 1877
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13
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0012884164
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Theory of electron cyclotron maser interaction in a cavity at the harmonic frequencies
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K. R. Chu, “Theory of electron cyclotron maser interaction in a cavity at the harmonic frequencies,” Phys. Fluids, p. 2354, 1978.
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(1978)
Phys. Fluids
, pp. 2354
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Chu, K.R.1
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14
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84939033690
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Azimuthally asymmetric electron cyclotron maser instability
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Sept.
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S. Ahn and J. Choe, “Azimuthally asymmetric electron cyclotron maser instability,” Bull. Amer. Phys. Soc., Vol. 23, No. 7, p. 749, Sept. 1978.
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(1978)
Bull. Amer. Phys. Soc.
, vol.23
, Issue.7
, pp. 749
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Ahn, S.1
Choe, J.2
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15
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84939037757
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Analytic scaling of efficiency for the gyrotron traveling amplifier operating at cyclotron harmonics
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May
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K. R. Chu, A. T. Drobot, H. H. Szu, and P. Sprangle, “Analytic scaling of efficiency for the gyrotron traveling amplifier operating at cyclotron harmonics,” NRL Memo. Rep. 3892, May 1979.
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(1979)
NRL Memo. Rep
, pp. 3892
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Chu, K.R.1
Drobot, A.T.2
Szu, H.H.3
Sprangle, P.4
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16
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36849105867
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Negative mass instability
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R. W. Landau and V. K. Neil, “Negative mass instability,” Phys. Fluids, pp. 2412–2427, 1966.
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(1966)
Phys. Fluids
, pp. 2412-2427
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Landau, R.W.1
Neil, V.K.2
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17
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0017526208
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Experimental study of microwave generation and suppression in a non-neutral e-layer
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W. W. Destler, D. W. Hudgings, M. J. Rhee, S. Kawaski, and V. L. Granatstein, “Experimental study of microwave generation and suppression in a non-neutral e-layer,” J. Appl. Phys., pp. 3291–3296, 3296, 1977.
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(1977)
J. Appl. Phys.
, vol.3296
, pp. 3291-3296
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Destler, W.W.1
Hudgings, D.W.2
Rhee, M.J.3
Kawaski, S.4
Granatstein, V.L.5
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18
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0016973293
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Excitation of electromagnetic waves from a rotating annula relativistic e-beam
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P. Sprangle, “Excitation of electromagnetic waves from a rotating annula relativistic e-beam,” J. Appl. Phys., pp. 2935–2940, 1976.
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(1976)
J. Appl. Phys.
, pp. 2935-2940
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Sprangle, P.1
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19
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35348851797
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Kinetic description of negative mass instability in an intense relativistic nonneutral e-layer
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H. Uhm and R. C. Davidson, “Kinetic description of negative mass instability in an intense relativistic nonneutral e-layer,” Phys. Fluids, p. 771, 1977.
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(1977)
Phys. Fluids
, pp. 771
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Uhm, H.1
Davidson, R.C.2
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20
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84939042455
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Rigorous derivation of general dispersion relationship for gyrotron
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July
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J. Y. Choe and S. Ahn, “Rigorous derivation of general dispersion relationship for gyrotron,” NRL Memo. Rep. 4041, July 1979;
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(1979)
NRL Memo. Rep
, vol.EDL-1
, pp. 4041-4049
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Choe, J.Y.1
Ahn, S.2
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21
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0018923843
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Analysis of the gyrotron amplifier for azimuthally varying TE modes
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S. Ahn and J. Choe, “Analysis of the gyrotron amplifier for azimuthally varying TE modes,” IEEE Electron Device Lett., Vol. EDL-1, pp. 8–9, 1980.
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(1980)
IEEE Electron Device Lett
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Ahn, S.1
Choe, J.2
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22
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84939019003
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Analysis of linear growth rates of gyrotron for TElns mode with zero-temperature beam electrons
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June
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“Analysis of linear growth rates of gyrotron for TE lns mode with zero-temperature beam electrons,” NRL Memo. Rep. 4035, June 1979.
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(1979)
NRL Memo. Rep
, pp. 4035
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23
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84939013501
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The instability boundary and growth rate contours of the gyrotron amplifier with spreads in energy and momenta
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Nov. NRL Memo. Rep. 4106, Nov.
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“The instability boundary and growth rate contours of the gyrotron amplifier with spreads in energy and momenta,” NRL Memo. Rep. 4106, Nov. 1979;
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(1979)
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24
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0019018876
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Spectral analysis on effects of spreads in energy and momentum in a gyrotron amplifier
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May.
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“The instability boundary and growth rate contours of the gyrotron amplifier with spreads in energy and momenta,” NRL Memo. Rep. 4106, Nov. 1979; also J. Y. Choe and S. Ahn, “Spectral analysis on effects of spreads in energy and momentum in a gyrotron amplifier,” IEEE Trans. Electron Devices, Vol. ED-27, pp. 962–964, May 1980.
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(1980)
IEEE Trans. Electron Devices
, vol.ED-27
, pp. 962-964
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Choe, J.Y.1
Ahn, S.2
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25
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84939028559
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Gyrotron design of TE-111 mode
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Dec. W-3-7
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S. Ahn, N. Vanderplaats, J. Choe, R. Kyser, H. Brown, P. Boran, and R. Van Wagoner, “Gyrotron design of TE-111 mode,” in 4th Int. Conf. on Infrared and Millimeter Waves and Their Applications, Conf. Dig., W-3-7, p. 131, Dec. 1979.
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(1979)
4th Int. Conf. on Infrared and Millimeter Waves and Their Applications, Conf. Dig.
, pp. 131
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Ahn, S.1
Vanderplaats, N.2
Choe, J.3
Kyser, R.4
Brown, H.5
Boran, P.6
Van Wagoner, R.7
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