DocumentCode
3603844
Title
Multichannel Systems of Resonant Microwave Pulse Compression
Author
Artemenko, Sergey N. ; Igumnov, Vladislav S. ; Yushkov, Yury G.
Author_Institution
Lab. No. 46, Nat. Res. Tomsk Polytech. Univ., Tomsk, Russia
Volume
43
Issue
10
fYear
2015
Firstpage
3537
Lastpage
3540
Abstract
Different designs of multichannel resonant microwave pulse compression systems operating in X- and S-bands are described. The output pulsed microwave power of these systems is expected to be severalfold greater than that of compression systems with a single output channel. These compression systems can be used as compact sources of high-power nanosecond-duration microwave pulses, sources of synchronized sequences of microwave pulses, and sources for development of phased arrays of compressed microwave pulses. In particular, the authors describe the characteristics of a two-channel S-band resonant microwave pulse compression system with nanosecond-duration output pulse and an output pulsed microwave power of 1 GW. The operation of a four-channel X-band compression system with a possible eightfold output pulsed microwave power increase, relatively to the microwave power in the cavity, is also described. The design of an eight-channel system with a 16-fold output pulsed microwave power increase is reviewed. The parameters of an X-band compression system with multichannel output unit formed as a set of interference microwave switches extracting the energy in synchronism are presented.
Keywords
microwave switches; pulse compression; pulsed power switches; S-bands; X-band; high-power nanosecond-duration microwave puls; interference microwave switch; multichannel resonant microwave pulse compression; phased array; power 1 GW; pulsed microwave power; Cavity resonators; Laser beams; Masers; Microwave oscillators; Synchronization; Accelerator; commutator; interference switch; microwave pulse compression system; resonator; waveguide Transverse Electric-tee; waveguide Transverse Electric-tee.;
fLanguage
English
Journal_Title
Plasma Science, IEEE Transactions on
Publisher
ieee
ISSN
0093-3813
Type
jour
DOI
10.1109/TPS.2015.2449287
Filename
7161393
Link To Document