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Multispin correlations and pseudo-thermalization of the transient density matrix in solid-state NMR: free induction decay and magic echo

机译:multispin相关性和在固态NmR瞬态密度矩阵的伪热化:自由感应衰减和魔回波

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摘要

Quantum unitary evolution typically leads to thermalization of generic interacting many-body systems. There are very few known general methods for reversing this process, and we focus on the magic echo, a radio-frequency pulse sequence known to approximately “rewind” the time evolution of dipolar coupled homonuclear spin systems in a large magnetic field. By combining analytic, numerical, and experimental results we systematically investigate factors leading to the degradation of magic echoes, as observed in reduced revival of mean transverse magnetization. Going beyond the conventional analysis based on mean magnetization we use a phase encoding technique to measure the growth of spin correlations in the density matrix at different points in time following magic echoes of varied durations and compare the results to those obtained during a free induction decay (FID). While considerable differences are documented at short times, the long-time behavior of the density matrix appears to be remarkably universal among the types of initial states considered – simple low order multispin correlations are observed to decay exponentially at the same rate, seeding the onset of increasingly complex high order correlations. This manifestly athermal process is constrained by conservation of the second moment of the spectrum of the density matrix and proceeds indefinitely, assuming unitary dynamics.
机译:量子unit变通常导致通用的相互作用多体系统热化。逆转此过程的已知通用方法很少,我们关注的是魔术回波,即一种已知在大磁场中近似“倒退”偶极耦合同核自旋系统的时间演化的射频脉冲序列。通过结合分析,数值和实验结果,我们系统地研究了导致平均水平磁化强度降低的现象所导致的魔术回声退化的因素。超越了基于平均磁化强度的常规分析方法,我们使用相位编码技术来测量不同持续时间的魔术回声在不同时间点密度矩阵中自旋相关性的增长,并将结果与​​在自由感应衰变期间获得的结果进行比较( FID)。尽管在短时间内记录了相当大的差异,但密度矩阵的长期行为在所考虑的初始状态类型之间似乎非常普遍–观察到简单的低阶多旋相关性以相同的速率呈指数衰减,从而引发了越来越复杂的高阶相关。假设单位动力学,这种明显的无热过程受到密度矩阵谱第二矩守恒的约束,并且无限期地进行。

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