Relativistic Cherenkov Microwave Oscillator Without a Guiding Magnetic Field / E. M. Totmeninov, A. I. Klimov, V. V. Rostov

Уровень набора: IEEE Transactions on Plasma ScienceОсновной Автор-лицо: Totmeninov, E. M., Evgeny MarkovichАльтернативный автор-лицо: Klimov, A. I., specialist in the field of electronics, Associate Professor of Tomsk Polytechnic University, Candidate of physical and mathematical sciences, 1955-, Aleksey Ivanovich;Rostov, V. V., Vladislav VladimirovichЯзык: английский.Страна: .Резюме или реферат: In this paper, microwave oscillation in which an electromagnetic wave and a continuous cylindrical relativistic electron beam (REB) with no magnetic field are in Cherenkov synchronism was studied. Analytical estimates of the beam-transport length were given, and analysis of the effect of electron-beam premodulation on the oscillator starting current and linear efficiency was made. Using numerical simulation, the oscillator geometry with a slow wave structure of length about three times the wavelength and with an efficiency of 30%-44% was determined. In experiment, the transport of a continuous cylindrical high-current REB over a distance about two times greater than the drift-tube diameter was demonstrated. Stable oscillation with ap 10% efficiency was obtained, taking into account the total current of a planar diode producing the electron beam. The microwave peak power for the operating TM01 mode was 1.3 plusmn 0.3 GW at 4.03 GHz..Примечания о наличии в документе библиографии/указателя: [References: 10 tit.].Аудитория: .Тематика: труды учёных ТПУ | электронный ресурс | генераторы | обратные волны | СВЧ-мощность Ресурсы он-лайн:Щелкните здесь для доступа в онлайн
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[References: 10 tit.]

In this paper, microwave oscillation in which an electromagnetic wave and a continuous cylindrical relativistic electron beam (REB) with no magnetic field are in Cherenkov synchronism was studied. Analytical estimates of the beam-transport length were given, and analysis of the effect of electron-beam premodulation on the oscillator starting current and linear efficiency was made. Using numerical simulation, the oscillator geometry with a slow wave structure of length about three times the wavelength and with an efficiency of 30%-44% was determined. In experiment, the transport of a continuous cylindrical high-current REB over a distance about two times greater than the drift-tube diameter was demonstrated. Stable oscillation with ap 10% efficiency was obtained, taking into account the total current of a planar diode producing the electron beam. The microwave peak power for the operating TM01 mode was 1.3 plusmn 0.3 GW at 4.03 GHz.

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