首页> 外文期刊>The Journal of Chemical Physics >Effective Floquet Hamiltonians for dipolar and quadrupolar coupled N-spin systems in solid state nuclear magnetic resonance under magic angle spinning
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Effective Floquet Hamiltonians for dipolar and quadrupolar coupled N-spin systems in solid state nuclear magnetic resonance under magic angle spinning

机译:魔术角旋转下固态核磁共振中偶极和四极耦合N旋系统的有效Floquet哈密顿量

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摘要

Spin dynamics under magic angle spinning has been studied using different theoretical approaches and also by extensive numerical simulation programs. In this article we present a general theoretical approach that leads to analytic forms for effective Hamiltonians for an N-spin dipolar and quadrupolar coupled system under magic angle spinning (MAS) conditions, using a combination of Floquet theory and van Vleck (contact) transformation. The analytic forms presented are shown to be useful for the study of MAS spin dynamics in solids with the help of a number of simulations in two, three, and four coupled, spin-1/2 systems as well as spins in which quadrupolar interactions are also present.
机译:使用不同的理论方法以及广泛的数值模拟程序研究了魔角旋转下的自旋动力学。在本文中,我们介绍了一种通用的理论方法,该方法结合了Floquet理论和van Vleck(接触)变换,为魔术角旋转(MAS)条件下的N自旋双极和四极耦合系统提供了有效的哈密顿量的解析形式。通过在两个,三个和四个耦合的spin-1 / 2系统以及其中四极相互作用为自旋的自旋中进行的许多模拟,显示出给出的分析形式对于固体中MAS自旋动力学的研究是有用的。也存在。

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