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Enhanced dynamic nuclear polarization via swept microwave frequency combs

机译:通过扫频微波梳增强动态核极化

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摘要

Dynamic nuclear polarization (DNP) has enabled enormous gains in magnetic resonance signals and led to vastly accelerated NMR/MRI imaging and spectroscopy. Unlike conventional cw-techniques, DNP methods that exploit the full electron spectrum are appealing since they allow direct participation of all electrons in the hyperpolarization process. Such methods typically entail sweeps of microwave radiation over the broad electron linewidth to excite DNP but are often inefficient because the sweeps, constrained by adiabaticity requirements, are slow. In this paper, we develop a technique to overcome the DNP bottlenecks set by the slow sweeps, using a swept microwave frequency comb that increases the effective number of polarization transfer events while respecting adiabaticity constraints. This allows a multiplicative gain in DNP enhancement, scaling with the number of comb frequencies and limited only by the hyperfine-mediated electron linewidth. We demonstrate the technique for the optical hyperpolarization of 13C nuclei in powdered microdiamonds at low fields, increasing the DNP enhancement from 30 to 100 measured with respect to the thermal signal at 7T. For low concentrations of broad linewidth electron radicals [e.g., TEMPO ((2,2,6,6-tetramethylpiperidin-1-yl)oxyl)], these multiplicative gains could exceed an order of magnitude.
机译:动态核极化(DNP)已使磁共振信号获得了巨大收益,并大大加快了NMR / MRI成像和光谱学的发展。与传统的连续波技术不同,利用全电子光谱的DNP方法具有吸引力,因为它们允许所有电子直接参与超极化过程。这样的方法通常需要在宽的电子线宽上扫描微波辐射以激发DNP,但通常效率低下,因为受绝热要求的限制,扫描很慢。在本文中,我们开发了一种技术,该技术可克服扫频所造成的DNP瓶颈,该技术使用扫频微波频率梳,可在尊重绝热性约束的同时提高极化转移事件的有效次数。这使得DNP增强倍增,并随梳齿频率的变化而缩放,并且仅受超精细介导的电子线宽的限制。我们演示了在低场下微粉状金刚石中 13 C核的光学超极化技术,相对于7T时的热信号,DNP增强从30增加到100。对于低浓度的宽线宽电子自由基[例如TEMPO((2,2,6,6-四甲基哌啶-1-基)氧基)],这些乘性增益可能超过一个数量级。

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