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Nuclear singlet relaxation by scalar relaxation of the second kind in the slow-fluctuation regime

机译:通过标量放松的核单线弛豫在缓慢波动制度中的第二种

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摘要

The singlet state of nuclear spin-1/2 pairs is protected against many common relaxation mechanisms. Singlet order, which is defined as the population difference between the nuclear singlet and triplet states, usually decays more slowly than the nuclear magnetization. Nevertheless, some decay mechanisms for nuclear singlet order persist. One such mechanism is called scalar relaxation of the second kind (SR2K) and involves the relaxation of additional nuclei ("third spins") which have scalar couplings to the spin-1/2 pair. This mechanism requires a difference between the couplings of at least one third spin with the two members of the spin-1/2 pair, and depends on the longitudinal relaxation time of the third spin. The SR2K mechanism of nuclear singlet relaxation has previously been examined in the case where the relaxation rate of the additional spins is on the time scale of the nuclear Larmor frequency. In this paper, we consider a different regime, in which the longitudinal relaxation of the third spins is on a similar time scale to the J-coupling between the members of the spin pair. This regime is often encountered when the spin-1/2 pair has scalar couplings to nearby deuterium nuclei. We show that the SR2K mechanism may be suppressed in this regime by applying a radiofrequency field which is resonant either with the members of the spin pair, or with the third spins. These phenomena are analyzed theoretically and by numerical simulations, and demonstrated experimentally on a diester of [C-13(2), H-2(2)]-labeled fumarate in solution.
机译:核旋转1/2对的单向状态受到许多常见的弛豫机制。单线顺序被定义为核态态和三联状态之间的人口差异,通常比核磁化更慢。然而,核单线命令的一些衰变机制持续存在。一种这样的机构被称为第二种(SR2K)的标量松弛,并且涉及释放具有向Spin-1/2对的标量耦合的额外核(“第三旋转”)。该机制需要至少一个第三旋转的耦合与旋转-1 / 2对的两个构件之间的差异,并且取决于第三旋转的纵向松弛时间。在额外旋转的弛豫率在核传道频率的时间尺度的情况下,先前研究了核单线松弛的SR2K机制。在本文中,我们考虑一种不同的制度,其中第三旋转的纵向松弛是在旋转对构件之间的j耦合的类似时间尺度上。当Spin-1/2对具有对附近的氘核的标量耦合时,通常遇到该制度。我们表明,通过施加与旋转对的构件的射频场或第三旋转,可以通过施加射频场来抑制SR2K机构。理论上和通过数值模拟分析这些现象,并通过实验在[C-13(2),H-2(2)] - 在溶液中标记的富马酸二酯进行了实验证明。

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