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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. I. The case of long-lived signals in inhomogeneously broadened spin systems
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Breakdown of linear response theory under low-power excitation in NMR. I. The case of long-lived signals in inhomogeneously broadened spin systems

机译:核磁共振低功率激发下线性响应理论的分解。 I.非均匀加宽自旋系统中长寿命信号的情况

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In this work, we examine the application of linear response theory to the problem of low-power excitation in inhomogeneously broadened spin systems when the strength of the radiofrequency (RF) pulse, nu(RF), is smaller than the inhomogeneous linewidth. Even for small overall excitations [Theta = 2 pi nu T-RF(p) 1 where T-p is the RF pulse length], linear response theory is shown to break down for spins with resonance frequencies that are on the order of nu(RF), which is due to the fact that the RF interaction cannot be treated as a small perturbation in this case. This breakdown in linear response theory can be partially corrected for by enforcing unitarity in the linear response. Furthermore, the nature of the spin echo generated by a pi(X)-pulse applied immediately after a low-power pulse is investigated. Numerical calculations and experiments performed in an inhomogeneously broadened H2O/D2O solution confirm the theoretical predictions presented in this work. Published by AIP Publishing.
机译:在这项工作中,当射频(RF)脉冲的强度nu(RF)小于不均匀线宽时,我们研究了线性响应理论在不均匀加宽自旋系统中低功率激励问题上的应用。即使对于小的整体激励[Theta = 2 pi nu T-RF(p) 1,其中Tp是RF脉冲长度],线性响应理论也被证明对于共振频率为nu( RF),这是因为在这种情况下,RF交互不能被视为很小的扰动。通过加强线性响应的统一性,可以部分纠正线性响应理论中的这种故障。此外,研究了在低功率脉冲之后立即施加的pi(X)脉冲产生​​的自旋回波的性质。在不均匀加宽的H2O / D2O解决方案中进行的数值计算和实验证实了这项工作中提出的理论预测。由AIP Publishing发布。

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