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On the use of frequency-swept pulses and pulses designed with optimal control theory for the acquisition of ultra-wideline NMR spectra

机译:关于使用具有最优控制理论的频率扫描脉冲和脉冲的使用,以获取超频率的Ulla-wideeld enmr谱

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Frequency-swept (FS) pulses, such as wideband uniform-rate smooth-truncation (WURST) pulses, have found much success for the acquisition of ultra-wideline (UW) solid-state NMR spectra. In this preliminary study, new pulses and pulse sequences are explored in simulation and experimentally for several nuclei exhibiting UWNMR powder patterns under static conditions, including Sn-119 (I = 1/2), Pt-195 (I = 1/2), H-2 (I = 1), and Ga-71 (I = 3/2). First, hyperbolic secant (HS) and tanh/tan (THT) pulses are tested and implemented as excitation and refocusing pulses in spin-echo and Carr-Purcell/Meiboom Gill (CPMG)-type sequences, and shown to have comparable performances to analogous WURST pulses. Second, optimal control theory (OCT) is utilized for the design of new Optimal Control Theory Optimized Broadband Excitation and Refocusing (OCTOBER) pulses, using carefully parameterized WURST, THT, and HS pulses as starting points. Some of the new OCTOBER pulses used in spin-echo sequences are capable of efficient broadband excitation and refocusing, in some cases resulting in spectra with increased signal enhancements over those obtained in experiments using conventional FS pulses. Finally, careful consideration of the spin dynamics of several systems, by monitoring of the time evolution of the density matrix via the Liouville-von Neumann equation and analysis of the time-resolved Fourier transforms of the pulses, lends insight into the underlying mechanisms of the FS and OCTOBER pulses. This is crucial for understanding their performance in terms of generating uniformly excited patterns of high signal intensity, and for identifying trends that may offer pathways to generalized parameterization and/or new pulse shapes. (C) 2019 Elsevier Inc. All rights reserved.
机译:频率 - 扫描(FS)脉冲(例如宽带均匀速率平滑截断(氟)脉冲,已经找到了获取超宽级(UW)固态NMR光谱的多大成功。在该初步研究中,在模拟中探讨了新的脉冲和脉冲序列,并在实验上探讨了在静态条件下表现出UWNMR粉末图案的几个核,包括SN-119(I = 1/2),PT-195(i = 1/2), H-2(i = 1)和Ga-71(i = 3/2)。首先,测试和在旋转回波和Carr-purcell / Meiboom Gill(CPMG)-Type序列中的激励和重新聚焦脉冲,并将双曲线晶胞(HS)和TanH / TAN(THT)脉冲进行测试,并将其显示为类似于类似的性能湿润脉冲。其次,最佳控制理论(OCT)用于设计新的最优控制理论优化的宽带激励和重新聚焦(10月)脉冲,使用仔细参数化的Wurst,THT和HS脉冲作为起点。在旋转回波序列中使用的一些新的10月脉冲能够有效的宽带激发和重键,在一些情况下导致具有常规FS脉冲在实验中获得的信号增强的光谱。最后,通过监测通过Liouville-Von Neumann方程监测密度矩阵的时间演化的仔细考虑若干系统的时间演变和脉冲的时间分辨傅里叶变换的分析,介绍了对潜在机制的洞察力FS和10月脉冲。这对于在生成均匀激发的高信号强度的均匀兴奋模式方面是至关重要的,并且用于识别可能提供通用参数化和/或新脉冲形状的途径的趋势。 (c)2019 Elsevier Inc.保留所有权利。

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