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首页> 外文期刊>Journal of Infrared, Millimeter, and Terahertz Waves >Stability Analysis of a Second Harmonic Coaxial-Waveguide Gyrotron Backward-Wave Oscillator
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Stability Analysis of a Second Harmonic Coaxial-Waveguide Gyrotron Backward-Wave Oscillator

机译:二次谐波同轴波导回旋加速器后向振荡器的稳定性分析

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摘要

This study analyzes the stability of a Ka-band second harmonic gyrotron backward-wave oscillator (gyro-BWO) with a coaxial interaction waveguide. All of the possible competing modes in the frequency tuning range are considered. To suppress various competing modes, the downstream part of the coaxial interaction waveguide is loaded with distributed losses. Although the competing modes have different kinds of transverse field distributions, simulation results show that the losses of the outer cylinder and those of the inner cylinder serve as complementary means of suppressing the competing modes. The losses can stabilize the competing modes while having minor effects on the start-oscillation current of the operating mode. Detailed investigations were performed involving the dependence of the start-oscillation currents on the parameters of the lossy inner cylinder and the lossy outer cylinder, including the resistivity and the length of the lossy section. Moreover, under stable operating conditions, the performances of the second harmonic coaxial gyro-BWO with different sets of circuit parameters are predicted and compared.
机译:本研究分析了具有同轴相互作用波导的Ka波段二次谐波回旋回波振荡器(gyro-BWO)的稳定性。考虑频率调谐范围内的所有可能竞争模式。为了抑制各种竞争模式,同轴相互作用波导的下游部分负载有分布式损耗。尽管竞争模式具有不同种类的横向场分布,但仿真结果表明,外圆柱体和内圆柱体的损耗是抑制竞争模式的补充手段。损耗可以稳定竞争模式,同时对工作模式的启动振荡电流产生较小影响。进行了详细的研究,包括启动振荡电流对有损内圆柱和有损外圆柱的参数的依赖性,包括电阻率和有损截面的长度。此外,在稳定的工作条件下,可以预测和比较具有不同电路参数集的二次谐波同轴陀螺BWO的性能。

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