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Continuous-wave operation of a 460-GHz second harmonic gyrotron oscillator

机译:460 GHz二次谐波回旋振荡器的连续波操作

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We report the regulated continuous-wave (CW) operation of a second harmonic gyrotron oscillator at output power levels of over 8 W (12.4 kV and 135 mA beam voltage and current) in the TE/sub 0,6,1/ mode near 460 GHz. The gyrotron also operates in the second harmonic TE/sub 2,6,1/ mode at 456 GHz and in the TE/sub 2,3,1/ fundamental mode at 233 GHz. CW operation was demonstrated for a one-hour period in the TE/sub 0,6,1/ mode with better than 1% power stability, where the power was regulated using feedback control. Nonlinear simulations of the gyrotron operation agree with the experimentally measured output power and radio-frequency (RF) efficiency when cavity ohmic losses are included in the analysis. The output radiation pattern was measured using a pyroelectric camera and is highly Gaussian, with an ellipticity of 4%. The 460-GHz gyrotron will serve as a millimeter-wave source for sensitivity-enhanced nuclear magnetic resonance (dynamic nuclear polarization) experiments at a magnetic field of 16.4 T.
机译:我们在460附近的TE / sub 0,6,1 /模式下报告了二次谐波回旋振荡器的稳定连续波(CW)操作,其输出功率级别超过8 W(12.4 kV和135 mA束电压和电流) GHz。回旋加速器还以456 GHz的二次谐波TE / sub 2,6,1 /模式和233 GHz的TE / sub 2,3,1 /基本模式工作。在TE / sub 0,6,1 /模式下,具有1%的电源稳定性的CW操作演示了一个小时的时间,其中使用反馈控制来调节电源。当分析中包括空腔欧姆损耗时,回旋管运行的非线性模拟与实验测量的输出功率和射频(RF)效率相符。使用热释电照相机测量了输出辐射方向图,该辐射方向图是高斯型的,椭圆率为4%。 460 GHz的回旋管将用作毫米波源,用于在16.4 T的磁场下进行灵敏度增强的核磁共振(动态核极化)实验。

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