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Continuous-Wave Operation of a Frequency-Tunable 460-GHz Second-Harmonic Gyrotron for Enhanced Nuclear Magnetic Resonance

机译:可调频460 GHz二次谐波回旋管的连续波操作,可增强核磁共振

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The design, operation, and characterization of a continuous-wave (CW) tunable second-harmonic 460-GHz gyrotron are reported. The gyrotron is intended to be used as a submillimeter-wave source for 700-MHz nuclear magnetic resonance experiments with sensitivity enhanced by dynamic nuclear polarization. The gyrotron operates in the whispering-gallery mode $hbox{TE}_{11, 2}$ and has generated 16 W of output power with a 13-kV 100-mA electron beam. The start oscillation current measured over a range of magnetic field values is in good agreement with theoretical start currents obtained from linear theory for successive high-order axial modes $hbox{TE}_{11, 2, q}$. The minimum start current is 27 mA. Power and frequency tuning measurements as a function of the electron cyclotron frequency have also been carried out. A smooth frequency tuning range of 1 GHz was obtained for the operating second-harmonic mode either by magnetic field tuning or beam voltage tuning. Long-term CW operation was evaluated during an uninterrupted period of 48 h, where the gyrotron output power and frequency were kept stable to within $pm$0.7% and $pm$ 6 ppm, respectively, by a computerized control system. Proper operation of an internal quasi-optical mode converter implemented to transform the operating whispering-gallery mode to a Gaussian-like beam was also verified. Based on the images of the gyrotron output beam taken with a pyroelectric camera, the Gaussian-like mode content of the output beam was computed to be 92% with an ellipticity of 12%.
机译:报告了连续波(CW)可调二次谐波460 GHz回旋管的设计,操作和特性。回旋管打算用作700 MHz核磁共振实验的亚毫米波源,其动态核极化可提高灵敏度。回旋管以回音壁模式$ hbox {TE} _ {11,2} $运行,并通过13 kV 100 mA电子束产生了16 W的输出功率。在连续的高阶轴向模式$ hbox {TE} _ {11,2,q} $上,在一定范围的磁场值下测得的启动振荡电流与从线性理论获得的理论启动电流非常吻合。最小启动电流为27 mA。还已经进行了作为电子回旋加速器频率的函数的功率和频率调谐测量。通过磁场调谐或电子束电压调谐,对于工作的第二谐波模式,可获得1 GHz的平滑频率调谐范围。在不间断的48小时内评估了连续CW的长期运行,其中通过计算机控制系统将回旋管的输出功率和频率分别稳定在$ pm $ 0.7%和$ pm $ 6 ppm以内。还验证了内部准光学模式转换器的正确操作,该转换器被实现为将工作的耳语画廊模式转换为类似高斯的光束。根据用热释电照相机拍摄的回旋管输出光束的图像,计算出输出光束的高斯型模态含量为92%,椭圆率为12%。

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