Review of studies of superradiative microwave generation in X band and Ka band relativistic BWOs / A. A. El'chaninov [et al.]

Уровень набора: IEEE Transactions on Plasma ScienceАльтернативный автор-лицо: El'chaninov, A. A., Anton Aleksandrovich;Korovin, S. D., Sergei Dmitrievich;Mesyats, G. A., russian physicist, academican, vice-president of RAS, graduate of Tomsk Polytechnic Institute, 1936-, Gennady Andreyevich;Pegel, I. V., specialist in the field of automation equipment and electronics, Professor of Tomsk Polytechnic University, Doctor of physical and mathematical sciences, 1964-, Igor Valerievich;Rostov, V. V., Vladislav Vladimirovich;Shpak, V. G.;Yalandin, М. I., Michael IvanovichЯзык: английский.Страна: .Резюме или реферат: [References: 14 tit.]; This paper presents a review of recent studies of superradiant (SR) regime of high-power microwave generation of relativistic backward-wave tubes. The fundamental possibility of producing microwave pulses with peak power substantially exceeding the driving electron beam power was demonstrated in theory and simulation. In experiments, beam-to-microwaves power conversion factors of 1.5 in the Ka band and up to 1.8 in the X band were achieved. High-efficiency Ka band generation was obtained at a low B field (2 T) below the cyclotron resonance. With the use of a dc solenoid, SR pulses were generated in a batch mode at a pulse repetition frequency of 1000-3500 Hz..Аудитория: .Тематика: труды учёных ТПУ | электронный ресурс Ресурсы он-лайн:Щелкните здесь для доступа в онлайн
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[References: 14 tit.]

This paper presents a review of recent studies of superradiant (SR) regime of high-power microwave generation of relativistic backward-wave tubes. The fundamental possibility of producing microwave pulses with peak power substantially exceeding the driving electron beam power was demonstrated in theory and simulation. In experiments, beam-to-microwaves power conversion factors of 1.5 in the Ka band and up to 1.8 in the X band were achieved. High-efficiency Ka band generation was obtained at a low B field (2 T) below the cyclotron resonance. With the use of a dc solenoid, SR pulses were generated in a batch mode at a pulse repetition frequency of 1000-3500 Hz.

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