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Atomic-scale measurement of ultraslow Li motions in glassy LiAlSi2 O6 by two-time L6 i spin-alignment echo NMR correlation spectroscopy

机译:二次L6 i自旋对准回波核磁共振核磁共振谱法测量LiAlSi2 O6玻璃态超慢锂运动的原子尺度

摘要

6Li spin-alignment echo (SAE) nuclear-magnetic-resonance (NMR) spectroscopy is used to monitor single-particle two-time correlation functions in LiAlSi2O6 glass. The method, here applied in the temperature range from 300 to 400 K, is sensitive to ultraslow Li hopping processes with rates (1/τSAE) down to 10 jumps/s. The use of a sample with natural 6Li abundance allowed the measurement of pure NMR spin-alignment echoes which are damped with increasing mixing time exclusively by slow Li jumps, i.e., free of influences arising from, e.g., interfering spin-diffusion effects. The considerably stretched correlation functions reveal the presence of a broad distribution of jump rates. The results are comprehensively compared with those recently obtained from both 7Li SAE and 7Li spin-lattice relaxation NMR as well as from dc conductivity measurements. Interestingly, the activation energy of the latter, which are sensitive to long-range Li transport parameters, is in good agreement with that microscopically probed by 6Li SAE NMR, here. © 2008 The American Physical Society.
机译:6Li自旋对准回波(SAE)核磁共振(NMR)光谱用于监测LiAlSi2O6玻璃中的单颗粒两次相关函数。该方法在300至400 K的温度范围内应用,对速率(1 /τSAE)降至10跳/秒的超慢Li跳跃过程非常敏感。使用具有自然6Li丰度的样品可以测量纯NMR自旋对准回波,仅由于缓慢的Li跳跃而增加了混合时间,从而衰减了纯NMR自旋对准回波,即不受例如自旋扩散效应的影响。显着扩展的相关函数表明存在跳跃率的广泛分布。将结果与最近从7Li SAE和7Li自旋晶格弛豫NMR以及直流电导率测量获得的结果进行了全面比较。有趣的是,后者的活化能对远距离的Li传输参数敏感,在此与通过6Li SAE NMR显微观察的活化能非常一致。 ©2008美国物理学会。

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