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 :
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