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A 250 GHz Gyrotron with a 3 GHz Tuning Bandwidth for Dynamic Nuclear Polarization

机译:具有3 GHz调谐带宽的250 GHz Gyrotron用于动态核极化

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摘要

We describe the design and implementation of a novel tunable 250 GHz gyrotron oscillator with >10 W output power over most of a 3 GHz band and >35 W peak power. The tuning bandwidth and power are sufficient to generate a >1 MHz nutation frequency across the entire nitroxide EPR lineshape for cross effect DNP, as well as to excite solid effect transitions utilizing other radicals, without the need for sweeping the NMR magnetic field. Substantially improved tunability is achieved by implementing a long (23 mm) interaction cavity that can excite higher order axial modes by changing either the magnetic field of the gyrotron or the cathode potential. This interaction cavity excites the rotating TE5,2,q mode, and an internal mode converter outputs a high-quality microwave beam with >94% Gaussian content. The gyrotron was integrated into a DNP spectrometer, resulting in a measured DNP enhancement of 54 on the membrane protein bacteriorhodopsin.
机译:我们描述了一种新型可调250 GHz陀螺振荡器的设计和实现,具有> 10 W输出功率超过3 GHz波段,> 35 W峰值功率。调谐带宽和功率足以在整个氮氧化物EPR线上产生> 1MHz营养频率,用于交叉效应DNP,以及用于使用其他基团的固体效果过渡,而无需扫描NMR磁场。通过实现长(23mm)的相互作用腔来实现显着改善的可调谐性,其通过改变陀螺仪或阴极电位的磁场来激发更高阶轴向模式的腔。该相互作用腔激励旋转TE5,2,Q模式,内部模式转换器输出高质量的微波光束,具有> 94%高斯内容。将陀螺仪集成到DNP光谱仪中,导致膜蛋白菌蛋白酶蛋白的测量DNP增强54。

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