首页> 外文期刊>The Journal of Chemical Physics >Theory of long-lived nuclear spin states in solution nuclear magnetic resonance. I. Singlet states in low magnetic field - art. no. 214505
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Theory of long-lived nuclear spin states in solution nuclear magnetic resonance. I. Singlet states in low magnetic field - art. no. 214505

机译:溶液核磁共振中的长寿命核自旋态理论。一,低磁场中的单重态-艺术没有。 214505

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摘要

We have recently demonstrated the existence of exceptionally long-lived nuclear spin states in solution-state nuclear magnetic resonance. The lifetime of nuclear spin singlet states in systems containing coupled pairs of spins-1/2 may exceed the conventional relaxation time constant T-1 by more than an order of magnitude. These long lifetimes may be observed if the long-lived singlet states are prevented from mixing with rapidly relaxing triplet states. In this paper we provide the detailed theory of an experiment which uses magnetic field cycling to observe slow singlet relaxation. An approximate expression is given for the magnetic field dependence of the singlet relaxation rate constant, using a model of intramolecular dipole-dipole couplings and fluctuating external random fields. (c) 2005 American Institute of Physics.
机译:我们最近证明了在溶液态核磁共振中存在超长寿命的核自旋态。在包含成对的自旋-1/2对的系统中,核自旋单重态的寿命可能比常规弛豫时间常数T-1超出一个数量级。如果防止了长寿命的单重态与快速松弛的三重态混合,则可以观察到这些较长的寿命。在本文中,我们提供了使用磁场循环观察慢单重态弛豫的实验的详细理论。使用分子内偶极-偶极耦合模型和波动的外部随机场,给出了单线态弛豫速率常数对磁场的依赖性的近似表达式。 (c)2005年美国物理研究所。

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