84.40.Fe Microwave tubes (e.g., klystrons, magnetrons, traveling-wave, backward-wave tubes, etc.)
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D.I. Trubetskov, G.M. Vdovina “Traveling wave tubes: a history of people and fates” Phys. Usp. 63 503–515 (2020)
01.65.+g, 84.40.Fe (all)
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P.S. Landa, D.I. Trubetskov, V.A. Gusev “Delusions versus reality in some physics problems: theory and experiment” Phys. Usp. 52 235–255 (2009)
01.65.+g, 47.27.−i, 84.40.Fe (all)
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V.A. Cherepenin “Relativistic multiwave oscillators and their possible applications” Phys. Usp. 49 1097–1102 (2006)
01.10.Fv, 78.70.Gq, 84.40.Fe, 84.47.+w (all)
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V.A. Vanke “Transverse electron-beam waves for microwave electronics” Phys. Usp. 48 917–937 (2005)
07.50.−e, 41.75.−i, 84.40.−x, 84.40.Fe (all)
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Yu.V. Gulyaev, V.F. Kravchenko, A.A. Kuraev “Vavilov-Cherenkov amplifiers with irregular electrodynamic structures” Phys. Usp. 47 583–599 (2004)
02.30.Yy, 41.60.Bq, 84.40.Fe (all)
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F.Kh. Baibulatov “Several demonstrations of the Doppler effect and interference in the centimeter radio band” Sov. Phys. Usp. 11 769–771 (1969)
84.40.Fe, 84.40.Ua, 01.50.My (all)
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P.L. Kapitza “High power electronics” Sov. Phys. Usp. 5 777–826 (1963)
84.40.Fe, 84.70.+p (all)
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D.A. Frank-Kamenetskii, V.M. Lopukhin “BIBLIOGRAPHY” Sov. Phys. Usp. 2 774–776 (1959)
01.30.Tt, 21.30.−x, 21.60.Cs, 21.60.Ev, 14.80.Hv, 84.40.Fe (all)
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