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35-GHz 25-kW CW low-voltage third-harmonic gyrotron

机译:35 GHz 25 kW CW低压三次谐波回旋管

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A 50-kV third-harmonic gyrotron is shown to be capable of high efficiency. Operation at the third harmonic allows the required magnetic field for 35 GHz generation to be supplied by a 4.5-kG permanent magnet. Two gyrotrons employing sliced circuits for mode control have been evaluated with a large-signal nonself-consistent particle-tracing simulation code and found to be capable of producing 25 kW continuously. The preliminary design of a third-harmonic TE/sub 41/ gyrotron utilizing a magnetron injection electron gun is predicted to yield a device efficiency of 17%, which can potentially be increased to 46% with an ideal single-stage depressed collector, while an axis-encircling electron beam from a Cusp electron gun is predicted to drive a third-harmonic TE/sub 31/ gyrotron with a device efficiency of 23%, which can theoretically be increased to 45% through the use of an ideal depressed collector.
机译:50 kV三谐波回旋管显示出高效率。在三次谐波下运行,可以通过4.5 kG永磁体提供35 GHz产生所需的磁场。已经使用大信号非自洽粒子跟踪模拟代码对使用切片电路进行模式控制的两个旋流器进行了评估,发现它们能够连续产生25 kW。预计使用磁控注入电子枪的三次谐波TE / sub 41 /回旋管的初步设计将产生17%的设备效率,如果使用理想的单级凹陷式集电极,则可以将其效率提高到46%。预计来自Cusp电子枪的环绕轴线的电子束将以23%的设备效率驱动三次谐波TE / sub 31 /回旋管,理论上通过使用理想的凹陷式集电极可以将其提高到45%。

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