DocumentCode :
62923
Title :
Combined Resonances in Cyclotron Masers With Periodic Slow-Wave Structures
Author :
Nusinovich, Gregory S. ; Ding Zhao
Author_Institution :
Inst. for Res. in Electron. & Appl. Phys., Univ. of Maryland, College Park, MD, USA
Volume :
43
Issue :
3
fYear :
2015
fDate :
Mar-15
Firstpage :
804
Lastpage :
814
Abstract :
It is shown that electrons moving along helical trajectories in an external uniform magnetic field and propagating in periodic slow-wave circuits can simultaneously interact with several space harmonics of such waves. The linear theory describing combined resonances in such systems is developed. Our treatment is limited by consideration of four resonances: 1) two cyclotron resonances at the fundamental and second cyclotron harmonics; 2) the Cherenkov resonance at the zero space and zero cyclotron harmonics; and 3) the cyclotron resonance under the anomalous Doppler effect condition at the minus first cyclotron harmonic. It is shown that the growth rate and the bandwidth in the cases of such a combined resonance, in which the dominant role is, as a rule, played by the cyclotron resonance at the fundamental and the Cherenkov resonance, can be much larger than in the case of single resonances.
Keywords :
Cherenkov radiation; Doppler effect; cyclotron masers; cyclotron resonance; slow wave structures; Cherenkov resonance; anomalous Doppler effect; combined resonances; cyclotron masers; cyclotron resonances; external uniform magnetic field; helical trajectory; linear theory; moving electrons; periodic slow wave circuits; periodic slow wave structures; zero cyclotron harmonics; zero space harmonics; Couplings; Cyclotrons; Dispersion; Doppler effect; Equations; Harmonic analysis; Resonant frequency; Cherenkov resonance; cyclotron maser; cyclotron resonance; slow-wave structure (SWS); slow-wave structure (SWS).;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2015.2396354
Filename :
7039283
Link To Document :
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