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1
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0034197597
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140-GHz gyrotron with multimegawatt output power
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June
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G. Dammertz, E. Borie, C. T. Iatrou, M. Kuntze, B. Pioscyk, and M. K. Thumm, "140-GHz gyrotron with multimegawatt output power," IEEE Trans. Plasma Sci., vol. 28, pp. 561-566, June 2000.
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Thumm, M.K.6
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2
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0034197666
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Development and testing of a high-average power, 94-GHz gyroklystron
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June
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B. Danly et al., "Development and testing of a high-average power, 94-GHz gyroklystron," IEEE Trans. Plasma Sci., vol. 28, pp. 713-726, June 2000.
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IEEE Trans. Plasma Sci.
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Danly, B.1
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3
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0034197594
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Experimental demonstration of W-band gyroklystron amplifiers with improved gain and efficiency
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June
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M. Blank, B. G. Danly, and B. Levush, "Experimental demonstration of W-band gyroklystron amplifiers with improved gain and efficiency," IEEE Trans. Plasma Sci., vol. 28, pp. 706-726, June 2000.
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Blank, M.1
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4
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0012802322
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The next linear collider klystron development program
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Stanford, CA, SLAC-PUB-8478, Sept.
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E. Jongewaard, G. Caryotakis, C. Pearson, R. M. Phillips, D. Sprehn, and A. Vlieks, "The next linear collider klystron development program," SLAC Rep., Stanford, CA, SLAC-PUB-8478, Sept. 2000.
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Jongewaard, E.1
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Sprehn, D.5
Vlieks, A.6
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5
-
-
0001098279
-
High-power operation of a three-cavity X-band coaxial gyroklystron
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W. Lawson et al., "High-power operation of a three-cavity X-band coaxial gyroklystron," Phys. Rev. Lett., vol. 81, pp. 3030-3033, 1998.
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Phys. Rev. Lett.
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Lawson, W.1
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6
-
-
0030168170
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Gyro-amplifiers as candidate RF drivers for TeV linear colliders
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June V. L. Granatstein and W. Lawson, "Gyro-amplifiers as candidate RF drivers for TeV linear colliders," IEEE Trans. Plasma Sci., 1996.
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(1996)
IEEE Trans. Plasma Sci.
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June, V.L.1
Lawson, G.W.2
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7
-
-
0030172423
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100-150 MW designs of two and three cavity gyroklystron amplifiers operating at fundamental and second harmonics in X- and Ku-band
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June
-
G. P. Saraph, W. Lawson, M. Castle, J. Cheng, J. P. Calame, and G. S. Nusinovich, "100-150 MW designs of two and three cavity gyroklystron amplifiers operating at fundamental and second harmonics in X- and Ku-band," IEEE Trans. Plasma Sci., vol. 24, pp. 671-677, June 1996.
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Saraph, G.P.1
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Nusinovich, G.S.6
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8
-
-
0032167012
-
An overmoded coaxial buncher cavity for a 100-MW gyroklystron
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M. Castle, J. Anderson, W. Lawson, and G. P. Saraph, "An overmoded coaxial buncher cavity for a 100-MW gyroklystron," IEEE Microwave Guided Wave Lett., vol. 8, pp. 302-304, 1998.
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IEEE Microwave Guided Wave Lett.
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Castle, M.1
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Lawson, W.3
Saraph, G.P.4
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9
-
-
0012813135
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A general linear growth rate formula for large orbit, annular electron beams
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W. Lawson and C. D. Striffler, "A general linear growth rate formula for large orbit, annular electron beams," Phys. Fluids, vol. 28, pp. 2868-2877, 1985.
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(1985)
Phys. Fluids
, vol.28
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Lawson, W.1
Striffler, C.D.2
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10
-
-
0026835669
-
Design and testing of an electron gun producing a segmented sheet beam for a quasioptical gyrotron
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Mar.
-
M. E. Read, A. J. Dudas, J. J. Petillo, and M. Q. Tran, "Design and testing of an electron gun producing a segmented sheet beam for a quasioptical gyrotron," IEEE Trans. Electron Devices, vol. 39, pp. 720-726, Mar. 1992.
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IEEE Trans. Electron Devices
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Read, M.E.1
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Petillo, J.J.3
Tran, M.Q.4
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11
-
-
0023994441
-
Magnetron injection gun scaling
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W. Lawson, "Magnetron injection gun scaling," IEEE Trans. Plasma Sci., vol. 16, pp. 290-295, 1988.
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(1988)
IEEE Trans. Plasma Sci.
, vol.16
, pp. 290-295
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-
Lawson, W.1
-
12
-
-
0034197585
-
Design of a 34 GHz second-harmonic coaxial gyroklystron experiment for accelerator applications
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M. R. Arjona and W. Lawson, "Design of a 34 GHz second-harmonic coaxial gyroklystron experiment for accelerator applications," IEEE Trans. Plasma Sci., vol. 28, pp. 700-705, 2000.
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IEEE Trans. Plasma Sci.
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Arjona, M.R.1
Lawson, W.2
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13
-
-
0004290683
-
Electron trajectory program
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Stanford, CA, SLAC-PUB-0331, Oct.
-
W. B. Herrmannsfeldt, "Electron trajectory program," SLAC Rep., Stanford, CA, SLAC-PUB-0331, Oct. 1988.
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(1988)
SLAC Rep.
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-
Herrmannsfeldt, W.B.1
-
14
-
-
0032635878
-
Design of a 7 MW, 95 GHz, three-cavity gyroklystron
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M. R. Arjona and W. Lawson, "Design of a 7 MW, 95 GHz, three-cavity gyroklystron," IEEE Trans. Plasma Sci., vol. 27, pp. 438-444, 1999.
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IEEE Trans. Plasma Sci.
, vol.27
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Arjona, M.R.1
Lawson, W.2
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15
-
-
0026940679
-
The scattering matrix formulation for overmoded coaxial cavities
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W. Lawson and P. E. Latham, "The scattering matrix formulation for overmoded coaxial cavities," IEEE Trans. Microwave Theory Tech., vol. 40, pp. 1973-1977, 1992.
-
(1992)
IEEE Trans. Microwave Theory Tech.
, vol.40
, pp. 1973-1977
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-
Lawson, W.1
Latham, P.E.2
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16
-
-
0001578425
-
Use of lie transforms to generalize Madey's theorem for computing gain in microwave devices
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P. E. Latham, S. M. Miller, and C. D. Striffler, "Use of lie transforms to generalize Madey's theorem for computing gain in microwave devices," Phys. Rev. A., Gen. Phys., vol. 45, pp. 1197-1206, 1992.
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Latham, P.E.1
Miller, S.M.2
Striffler, C.D.3
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17
-
-
0032097380
-
Experimental investigation of W-band (93 GHz) gyroklystron amplifiers
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M. Blank et al., "Experimental investigation of W-band (93 GHz) gyroklystron amplifiers," IEEE Trans. on Plasma Sci., vol. 26, pp. 409-415, 1998.
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IEEE Trans. on Plasma Sci.
, vol.26
, pp. 409-415
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-
Blank, M.1
-
18
-
-
0028530160
-
The design of a 100 MW, Ku-band second harmonic gyroklystron experiment
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P. E. Latham, W. Lawson, and V. Irwin, "The design of a 100 MW, Ku-band second harmonic gyroklystron experiment," IEEE Trans. Plasma Sci., vol. 22, pp. 804-817, 1994.
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(1994)
IEEE Trans. Plasma Sci.
, vol.22
, pp. 804-817
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Latham, P.E.1
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Irwin, V.3
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19
-
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0035364347
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Design of a 10 MW, 91.4 GHz frequency-doubling gyroklystron for advanced accelerator applications
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W. Lawson, R. L. Ives, M. Mizuhara, J. M. Neilson, and M. E. Read, "Design of a 10 MW, 91.4 GHz frequency-doubling gyroklystron for advanced accelerator applications," IEEE Trans. Plasma Sci., vol. 29, pp. 545-558, 2001.
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IEEE Trans. Plasma Sci.
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Lawson, W.1
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Read, M.E.5
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