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Intermolecular multiple-quantum coherence transfer echoes and multiple echoes in nuclear magnetic resonance

机译:分子间多量子相干传递回波和核磁共振中的多个回波

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摘要

In recent years evidence was presented that two radio frequency pulses in combination with suitable matched field gradient pulses produce cross peaks in two-dimensional NMR spectroscopy that reveal all the features of multiple-quantum/single-quantum coherence transfer signals. This experiment was termed CRAZED by Warren et al. Quite amazingly,identical signals were predicted on a purely classical basis. Thus the intriguing question arises whether this means that a classical analog to multiple-quantum coherences exists. In this study we show that this is clearly not the case. Coherence pathways of a purely single-quantum basis are excited anyway and lead independently to superimposed identical signals in parallel. Moreover, the observation of CRAZED signals per se neither disproves the adequacy of the high-temperature approximation, which was questioned in this context, nor proves a strong influence of intermolecular multiple-quantum coherences. However, the indispensable prerequisite for the description of the manifold CRAZED phenomena is that long-range dipolar interactions are taken into account either explicitly or in the continuous-limit form.
机译:近年来,有证据表明,两个射频脉冲与合适的匹配场梯度脉冲结合在二维NMR光谱中产生交叉峰,揭示了多量子/单量子相干传递信号的所有特征。沃伦等人将该实验称为CRAZED。令人惊讶的是,完全在经典的基础上预测了相同的信号。因此,产生了一个有趣的问题,即这是否意味着存在一个类似于多量子相干的经典模拟。在这项研究中,我们证明事实并非如此。无论如何,纯单量子基础的相干路径被激发,并独立地导致平行叠加的相同信号。此外,对CRAZED信号的观察本身并不能证明在此背景下受到质疑的高温近似的充分性,也不能证明分子间多量子相干性的强大影响。但是,描述流形CRAZED现象必不可少的前提是明确考虑或以连续极限形式考虑远程偶极相互作用。

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