Effect of Reflection on Mode Competition and Multi-Frequency Oscillation in a High-Power Sub-THz Gyrotron: Experimental Observation and Theoretical Analysis

被引:0
作者
Teruo Saito
Maria M. Melnikova
Nikita M. Ryskin
Shunsuke Tanaka
Ryuji Shinbayashi
Yuusuke Yamaguchi
Masafumi Fukunari
Yoshinori Tatematsu
机构
[1] University of Fukui,Research Center for Development of Far
[2] Saratov Branch,Infrared Region
[3] V.A. Kotel’nikov Institute of Radio Engineering and Electronics,undefined
[4] Saratov State University,undefined
来源
Journal of Infrared, Millimeter, and Terahertz Waves | 2020年 / 41卷
关键词
Gyrotron; Mode competition; Reflection; Collective Thomson scattering; Plasma diagnostics; Multi-frequency oscillation;
D O I
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中图分类号
学科分类号
摘要
Equi-distantly distributed multi-peak frequency spectrum was observed in a high-power 300-GHz band gyrotron for the case of strong reflection off the vacuum window. An oscillation mode different from the design mode can oscillate by adjusting the magnetic field in the cavity. However, a large fraction of the output wave is reflected by the vacuum window. The reflected wave returns to the cavity through an internal mode converter. The azimuthal rotating direction of the reflected wave is opposite to that of the oscillating mode. A theoretical calculation of mode competition between the oscillating co-rotating mode and the counter-rotating mode originating from the reflected wave very well reproduces the observed frequency spectrum. The multi-peak frequency spectrum stems from periodic amplitude oscillation caused by the mode competition between the co-rotating mode and the counter-rotating mode. The frequency interval between the peaks is not simply decided by the round-trip time between the cavity and the vacuum window but determined by the period of the amplitude oscillation.
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页码:697 / 710
页数:13
相关论文
共 102 条
[1]  
Thumm M(2014)undefined IEEE Trans. Plasma Sci. 42 590-4139
[2]  
Thumm MKA(2019)undefined Nucl. Fusion 59 073001-undefined
[3]  
Denisov GG(2014)undefined Nucl. Fusion 54 023006-undefined
[4]  
Sakamoto K(2015)undefined Nucl. Fusion 55 013002-undefined
[5]  
Tran MQ(2015)undefined J. Instrument. 10 C10002-undefined
[6]  
Nishiura M(2017)undefined Plasma Fusion Res. 12 1206013-undefined
[7]  
Yamaguchi Y(2019)undefined Plasma Fusion Res. 14 1406104-undefined
[8]  
Saito T(1992)undefined Phys. Fluids B4 4131-undefined
[9]  
Tatematsu Y(2000)undefined IEEE Trans. Plasma Sci. 28 588-undefined
[10]  
Ikeuchi S(2003)undefined Int. J. Infrared Milli. Waves 24 429-undefined