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首页> 外文期刊>Journal of magnetic resonance >Frequency-agile gyrotron for electron decoupling and pulsed dynamic nuclear polarization
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Frequency-agile gyrotron for electron decoupling and pulsed dynamic nuclear polarization

机译:用于电子去耦和脉冲动态核极化的频率 - 敏捷戈罗龙

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摘要

We describe a frequency-agile gyrotron which can generate frequency-chirped microwave pulses. An arbitrary waveform generator (AWG) within the NMR spectrometer controls the microwave frequency, enabling synchronized pulsed control of both electron and nuclear spins. We demonstrate that the acceleration of emitted electrons, and thus the microwave frequency, can be quickly changed by varying the anode voltage. This strategy results in much faster frequency response than can be achieved by changing the potential of the electron emitter, and does not require a custom triode electron gun. The gyrotron frequency can be swept with a rate of 20 MHz/mu s over a 670 MHz bandwidth in a static magnetic field. We have already implemented time-domain electron decoupling with dynamic nuclear polarization (DNP) magic angle spinning (MAS) with this device. In this contribution, we show frequency-swept DNP enhancement profiles recorded without changing the NMR magnet or probe. The profile of endofullerenes exhibits a DNP profile with a 10 MHz linewidth, indicating that the device also has sufficient frequency stability, and therefore phase stability, to implement pulsed DNP mechanisms such as the frequency-swept solid effect. We describe schematics of the mechanical and vacuum construction of the device which includes a novel flanged sapphire window assembly. Finally, we discuss how commercially available continuous-wave gyrotrons can potentially be converted into similar frequency-agile high-power microwave sources. (C) 2018 Published by Elsevier Inc.
机译:我们描述了一种可以产生频率啁啾微波脉冲的频率敏捷的陀螺仪。 NMR光谱仪内的任意波形发生器(AWG)控制微波频率,从而实现电子和核旋转的同步脉冲控制。我们证明通过改变阳极电压,可以快速改变发射电子的加速度,从而快速改变。该策略产生的频率响应远远快于通过改变电子发射器的电位来实现的,并且不需要自定义三极管电子枪。可以在静态磁场中的670MHz带宽超过670MHz / mu S的速率扫描陀螺频率。我们已经实现了具有动态核极化(DNP)魔法角旋转(MAS)的时域电子解耦(MAS)。在这一贡献中,我们在不改变NMR磁体或探针的情况下记录频率扫描DNP增强型材。 Endofullerenes的简档具有DNP轮廓,其具有& 10 MHz线宽,表明该装置还具有足够的频率稳定性,因此相位稳定性地实现诸如频率扫描固体效果的脉冲DNP机制。我们描述了装置的机械和真空结构的示意图,该装置包括一种新型法兰蓝宝石窗组件。最后,我们讨论了商业上可用的连续波陀螺仪如何将可能转换成类似的频率 - 敏捷的大功率微波源。 (c)2018年由elsevier公司发布

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