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Efficient Low-Voltage Operation of a CW Gyrotron Oscillator at 233 GHz

机译:233 GHz连续波回旋振荡器的高效低压运行

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The gyrotron oscillator is a source of high average power millimeter-wave through terahertz radiation. In this paper, we report low beam power and high-efficiency operation of a tunable gyrotron oscillator at 233 GHz. The low-voltage operating mode provides a path to further miniaturization of the gyrotron through reduction in the size of the electron gun, power supply, collector, and cooling system, which will benefit industrial and scientific applications requiring portability. Detailed studies of low-voltage operation in the TE2,3,1 mode reveal that the mode can be excited with less than 7 W of beam power at 3.5 kV. During CW operation with 3.5-kV beam voltage and 50-mA beam current, the gyrotron generates 12 W of RF power at 233.2 GHz. The EGUN electron optics code describes the low-voltage operation of the electron gun. Using gun-operating parameters derived from EGUN simulations, we show that a linear theory adequately predicts the low experimental starting currents
机译:回旋振荡器是通过太赫兹辐射产生的高平均功率毫米波源。在本文中,我们报告了233 GHz可调回旋管振荡器的低束功率和高效率工作。低压操作模式通过减小电子枪,电源,收集器和冷却系统的尺寸,为回旋管的进一步小型化提供了一条途径,这将有利于需要便携性的工业和科学应用。对TE2,3,1模式下的低压操作的详细研究表明,在3.5 kV时,可用不到7 W的束功率激励该模式。在具有3.5kV束电压和50mA束电流的连续波操作期间,回旋管在233.2 GHz时产生12 W的RF功率。 EGUN电子光学规范描述了电子枪的低压操作。使用从EGUN模拟得出的枪支操作参数,我们表明线性理论可以充分预测低的实验启动电流

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