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首页> 外文期刊>The Journal of Chemical Physics >Breakdown of linear response theory under low-power excitation in NMR. II. The case of 'long-lived' signals in homogeneously broadened dipolar spin systems
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Breakdown of linear response theory under low-power excitation in NMR. II. The case of 'long-lived' signals in homogeneously broadened dipolar spin systems

机译:线性响应理论下的核磁共振低功率激发下的分解。 II。 “长期”信号在均匀扩大的双极自旋系统中的情况下

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In this work, the previous linear response theory developed to describe low-power, radiofrequency (RF) excitation in inhomogeneously broadened spin systems [Z. Gong and J. D. Walls, J. Chem. Phys. 145, 164201 (2016)] is applied to the problem of low-power excitation in homogeneously broadened dipolar spin systems when the strength of the RF pulse, nu(RF), is much less than the homogeneous linewidth, Delta nu 1/2. Application of a low-power pulse for a time T-p with a nominal flip-angle of Theta generates a broad signal with a "dip" at the RF transmitter frequency that deepens with increasing Theta. When a delay is placed before signal acquisition, only a negative, "long-lived" signal from the narrow "dip" remains. If a pi(X)-pulse is applied after low-power excitation, a "long-lived" signal lasting a time t approximate to T-p after the pi(X)-pulse is generated where dephasing due to B-0 inhomogeneity, anisotropic bulk magnetic susceptibility, and chemical shift anisotropy is refocused while dephasing due to nonzero chemical shift differences is only partially refocused. Contrary to previous observations, experiments in powdered hexamethylbenzene demonstrate that these "long-lived" signals can exist even in the absence of nonzero chemical shift differences. Additional experimental demonstrations in powdered and single-crystalline adamantane and ferrocene samples are also presented. Published by AIP Publishing.
机译:在这项工作中,先前的线性响应理论用来描述低功耗,射频(RF)激励在非均匀展宽自旋系统[Z.龚和J. D.墙壁,J.化学。物理。 145,164201(2016)]被施加到低功率激励的在均匀展宽偶极自旋系统的问题,当所述RF脉冲的强度,NU(RF),是比齐线宽要少得多,德尔塔NU 1/2。对于时间T-P与西塔的标称翻转角的低功率脉冲的施加产生具有“浸”在RF发射机频率的宽信号,随着增加西塔加深。当延迟被置于信号采集,只有负之前,“长寿命”,从狭窄的“浸”遗体信号。如果用π(X)-pulse低功率激励之后施加的,“长寿命”信号的pI之后持续一个时间t近似至Tp(X)其中-pulse移相由于B-0不均匀性产生,各向异性而移相由于非零化学位移差仅部分地再聚焦体磁化率,并且化学位移各向异性被重新聚焦。相反,以前的意见,在粉状六甲实验证明,这些“长住”信号甚至可以在没有非零化学位移存在差异。粉末和单晶金刚烷和二茂铁样品中附加的实验演示还提出。通过AIP发布发布。

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