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首页> 外文期刊>International Journal of Infrared and Millimeter Waves >Comparison of electron-beam-misalignment effect on starting current and output power in coaxial-cavity and cylindrical-cavity gyrotron oscillators
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Comparison of electron-beam-misalignment effect on starting current and output power in coaxial-cavity and cylindrical-cavity gyrotron oscillators

机译:同轴腔和圆柱腔回旋振荡器中电子束未对准对启动电流和输出功率的影响比较

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摘要

Comparative study is presented to the effect of the electron-beam misalignment on the starting current and output power of the coaxial-cavity and cylindrical-cavity gyrotron oscillators operating in the millimeter wave ranges. The numerical analysis is based on the gyrokinetic formulas for a TE_(28, 16, 1) mode at a frequency of 140 GHz. Results show that the coaxial-cavity gyrotron oscillator has lower starting current and less power loss than the cylindrical-cavity gyrotron oscillator when the electron-beam axis has a misalignment to the cavity axis.
机译:进行了比较研究,以研究电子束失准对在毫米波范围内工作的同轴腔和圆柱腔回旋管振荡器的启动电流和输出功率的影响。数值分析基于在140 GHz频率下TE_(28,16,1)模式的陀螺动力学公式。结果表明,当电子束轴与腔轴不重合时,同轴腔式回旋振荡器比圆柱形腔式回旋振荡器具有更低的启动电流和更低的功率损耗。

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