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Efficient 263 GHz magic angle spinning DNP at 100 K using solid-state diode sources

机译:使用固态二极管源的高效263 GHz魔法角度在100 k下旋转DNP

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The development of new, high-frequency solid-state diode sources capable of operating at 263 GHz, together with an optimized stator design for improved millimeter-wave coupling to the NMR sample, have enabled low-power DNP experiments at 263 GHz/400 MHz. With 250 mW output power, signal enhancements as high as 120 are achieved on standard samples - approximately 1/3 of the maximal enhancement available with high-power gyrotrons under similar conditions. Diode-based sources have a number of advantages over vacuum tube devices: they emit a pure mode, can be rapidly frequency-swept over a wide range of frequencies, have reproducible output power over this range, and have excellent output stability. By virtue of their small size, low thermal footprint, and lack of facility requirements, solid-state diodes are also considerably cheaper to operate and maintain than high-power vacuum tube devices. In light of these features, and anticipating further improvements in terms of available output power, solid-state diodes are likely to find widespread use in DNP and contribute to further advances in the field.
机译:开发能够在263GHz工作的新型高频固态二极管源,以及优化的定子设计,用于改善毫米波耦合到NMR样品,在263GHz / 400MHz处启用了低功耗DNP实验。具有250兆瓦的输出功率,在标准样品上实现高达120的信号增强 - 大约1/3的最大增强的高功率陀螺在相似条件下。基于二极管的源极具真空管装置的优点:它们发出纯模式,可以快速频率扫过多种频率,在该范围内具有可再现的输出功率,并具有出色的输出稳定性。凭借其体积小,热占地面积低,缺乏设施要求,实线二极管也比高功率真空管装置的操作更便宜。鉴于这些特征,并且预测可用输出功率方面的进一步改进,固态二极管可能会在DNP中发现广泛使用,并有助于该领域的进一步进步。

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