Review of studies of superradiative microwave generation in X band and Ka band relativistic BWOs

Bibliographic Details
Parent link:IEEE Transactions on Plasma Science
Vol. 32, iss. 3, pt. 1.— 2004.— [P. 1093-1099]
Other Authors: El'chaninov A. A. Anton Aleksandrovich, Korovin S. D. Sergei Dmitrievich, Mesyats G. A. Gennady Andreyevich, Pegel I. V. Igor Valerievich, Rostov V. V. Vladislav Vladimirovich, Shpak V. G., Yalandin М. I. Michael Ivanovich
Summary:Title screen
[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.
Режим доступа: по договору с организацией-держателем ресурса
Published: 2004
Subjects:
Online Access:https://doi.org/10.1109/TPS.2004.828802
Format: Electronic Book Chapter
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=653609
Description
Summary:Title screen
[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.
Режим доступа: по договору с организацией-держателем ресурса
DOI:10.1109/TPS.2004.828802