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Operational characteristics of a 14-W 140-GHz gyrotron for dynamic nuclear polarization

机译:动态核极化的14 W 140 GHz回旋管的工作特性

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The operating characteristics of a 140-GHz 14-W long pulse gyrotron are presented. The device is being used in dynamic nuclear polarization enhanced nuclear magnetic resonance (DNP/NMR) spectroscopy experiments. The gyrotron yields 14 W peak power at 139.65 GHz from the TE(0,3) operating mode using a 12.3-kV 25-mA electron beam. Additionally, up to 12 W peak has been observed in the TE(2,3) mode at 136.90 GHz. A series of mode converters transform the TE(0,3) operating mode to the TE(1,1) mode. Experimental results are compared with nonlinear simulations and show reasonable agreement. The millimeter-wave output beam was imaged in a single shot using a pyroelectric camera. The mode patterns matched reasonably well to theory for both the TE(0,1) mode and the TE(1,1) mode. Repeatable mode patterns were obtained at intervals ranging from 0.8 s apart to 11 min apart at the output of the final mode converter.
机译:介绍了140 GHz 14 W长脉冲回旋管的工作特性。该装置正在用于动态核极化增强核磁共振(DNP / NMR)光谱实验中。回旋仪使用12.3kV 25-mA电子束从TE(0,3)工作模式产生的139.65 GHz峰值功率为14W。此外,在136.90 GHz的TE(2,3)模式下已观察到高达12 W的峰值。一系列模式转换器将TE(0,3)工作模式转换为TE(1,1)模式。将实验结果与非线性仿真进行了比较,并显示出合理的一致性。毫米波输出光束使用热释电相机一次成像。对于TE(0,1)模式和TE(1,1)模式,模式模式都与理论相当吻合。在最终模式转换器的输出处,以间隔0.8 s至间隔11 min的间隔获得了可重复的模式模式。

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