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Design and application of robust rf pulses for toroid cavity NMR spectroscopy

机译:环形核磁共振波谱鲁棒射频脉冲的设计与应用

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摘要

We present robust radio frequency (rf) pulses that tolerate a factor of six inhomogeneity in the B1 field, significantly enhancing the potential of toroid cavity resonators for NMR spectroscopic applications. Both point-to-point (PP) and unitary rotation (UR) pulses were optimized for excitation, inversion, and refocusing using the gradient ascent pulse engineering (GRAPE) algorithm based on optimal control theory. In addition, the optimized parameterization (OP) algorithm applied to the adiabatic BIR-4 UR pulse scheme enabled ultra-short (50 μs) pulses with acceptable performance compared to standard implementations. OP also discovered a new class of non-adiabatic pulse shapes with improved performance within the BIR-4 framework. However, none of the OP-BIR4 pulses are competitive with the more generally optimized UR pulses. The advantages of the new pulses are demonstrated in simulations and experiments. In particular, the DQF COSY result presented here represents the first implementation of 2D NMR spectroscopy using a toroid probe.
机译:我们提出了强大的射频(rf)脉冲,可以在B1场中容忍六种不均匀性,从而显着增强了用于NMR光谱应用的环形腔谐振器的潜力。使用基于最佳控制理论的梯度上升脉冲工程(GRAPE)算法,对点对点(PP)和单位旋转(UR)脉冲进行了优化,以进行激励,求逆和重新聚焦。此外,应用于绝热BIR-4 UR脉冲方案的优化参数化(OP)算法与标准实现相比,能够以可接受的性能实现超短(50μs)脉冲。 OP还发现了一种新型的非绝热脉冲形状,在BIR-4框架内具有改进的性能。但是,OP-BIR4脉冲都无法与更优化的UR脉冲竞争。新脉冲的优点在仿真和实验中得到了证明。特别是,此处显示的DQF COZY结果代表使用环形探头的2D NMR光谱的第一个实现。

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