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Efficient, balanced, transmission line RF circuits by back propagation of common impedance nodes

机译:通过公共阻抗节点的反向传播实现高效,平衡的传输线射频电路

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摘要

We present a new, efficient strategy for designing fully balanced transmission line RF circuits for solid state NMR probes based on back propagation of common impedance nodes (BPCIN). In this approach, the impedance node phenomenon is the sole means of achieving mutual RF isolation and balance in all RF channels. BPCIN is illustrated using a custom double resonance 3.2 mm MAS probe operating at 500 MHz (~1H) and 125 MHz (~(13)C). When fully optimized, the probe is capable of producing high homogeneity (810 /90 ratios of 86% and 89% for ~1H and ~(13)C, respectively) and high efficiency (γB_1 = 100 kHz for ~1H and ~(13)C at 70 W and 180 W of RF input, respectively; up to 360 kHz for ~1H). The probe's performance is illustrated by 2D MAS correlation spectra of microcrystals of the tripeptide N-f-MLF-OH and hydrated amyloid fibrils of the protein PI3-SH3.
机译:我们提出了一种新的高效策略,用于基于公共阻抗节点(BPCIN)的反向传播为固态NMR探针设计完全平衡的传输线RF电路。在这种方法中,阻抗节点现象是在所有RF通道中实现相互RF隔离和平衡的唯一方法。 BPCIN是使用在500 MHz(〜1H)和125 MHz(〜(13)C)下运行的定制双谐振3.2 mm MAS探头进行说明的。经过完全优化后,该探头能够产生高均匀性(〜1H和〜(13)C的810/90比率,分别为86%和89%)和高效(〜1H和〜(13的γB_1= 100 kHz) )分别在70 W和180 W的RF输入下;高达1kHz时高达360 kHz)。该探针的性能由蛋白质PI3-SH3的三肽N-f-MLF-OH和水合淀粉样原纤维的微晶的2D MAS相关光谱说明。

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