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Stable, high efficiency gyrotron backward-wave oscillator

机译:稳定高效的回旋振荡器

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摘要

[[abstract]]Stability issues have been a major concern for the realization of broadband tunability of the gyrotron backward-wave oscillator (gyro-BWO). Multimode, time-dependent simulations are employed to examine the stability properties of the gyro-BWO. It is shown that the gyro-BWO is susceptible to both nonstationary oscillations and axial mode competition in the course of frequency tuning. Regions of nonstationary oscillations and axial mode competition are displayed in the form of stability maps over wide-ranging parameter spaces. These maps serve as a guide for the identification and optimization of stable windows for broadband tuning. Results indicate that a shorter interaction length provides greater stability without efficiency degradation. These theoretical predictions have been verified in a Ka-band gyro-BWO experiment using both short and long interaction lengths. In the case of a short interaction length, continuous and smooth tunability, in magnetic field and in beam voltage, was demonstrated with the high interaction efficiency reported so far. A maximum 3-dB tuning range of 1.3 GHz with a peak power of 149 kW at 29.8% efficiency was achieved. In a comparative experiment with a longer interaction length, the experimental data are characterized by piecewise-stable tuning curves separated by region(s) of nonstationary oscillations, as predicted by theory.
机译:[[摘要]]稳定性问题已成为实现回旋回波振荡器(gyro-BWO)宽带可调性的主要问题。多模式,与时间有关的模拟用于检查陀螺BWO的稳定性。结果表明,陀螺-BWO在频率调谐过程中容易受到非平稳振荡和轴向模式竞争的影响。非平稳振荡和轴向模式竞争的区域以稳定图的形式显示在广泛的参数空间上。这些地图可作为识别和优化宽带调谐稳定窗口的指南。结果表明,较短的相互作用长度提供了更大的稳定性,而效率没有下降。这些理论预测已在Ka波段陀螺-BWO实验中使用短和长相互作用长度进行了验证。在相互作用长度短的情况下,证明了在磁场和电子束电压中连续且平滑的可调性,迄今为止报道的相互作用效率很高。在效率为29.8%的情况下,实现了1.3 GHz的最大3 dB调谐范围和149 kW的峰值功率。在具有更长相互作用长度的比较实验中,实验数据的特征在于分段稳定的调谐曲线,该曲线由非平稳振荡的区域分开,这是理论上所预测的。

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    Fan CT;

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  • 年度 2011
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