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首页> 外文期刊>Journal of magnetic resonance >Field-dependent nuclear relaxation of spins 1/2 induced by dipole-dipole couplings to quadrupole spins: LaF3 crystals as an example
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Field-dependent nuclear relaxation of spins 1/2 induced by dipole-dipole couplings to quadrupole spins: LaF3 crystals as an example

机译:偶极子-偶极耦合引起的四极自旋的自旋1/2的场相关核弛豫:以LaF3晶体为例

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A general theory of spin-lattice nuclear relaxation of spins I = 1/2 caused by dipole-dipole couplings to quadrupole spins S >= 1; characterized by a non-zero averaged (static) quadrupole coupling, is presented. In multispin systems containing quadrupolar and dipolar nuclei, transitions of spins 1/2 leading to their relaxation are associated through dipole-dipole couplings with certain transitions of quadrupole spins. The averaged quadrupole coupling attributes to the energy level structure of the quadrupole spin and influences in this manner relaxation processes of the spin 1/2. Typically, quadrupole spins exhibit also a complex multiexponential relaxation sensed by the dipolar spin as an additional modulation of the mutual dipole-dipole coupling. The proposed model includes both effects and is valid for an arbitrary magnetic field and an arbitrary quadrupole spin quantum number. The theory is applied to interpret fluorine relaxation profiles in LaF3 ionic crystals. The obtained results are compared with predictions of the 'classical' Solomon relaxation theory. (c) 2005 Elsevier Inc. All rights reserved.
机译:由偶极-偶极耦合到四极自旋S> = 1引起的自旋I = 1/2的自旋晶格核弛豫的一般理论;提出了以非零平均(静态)四极耦合为特征的系统。在包含四极和偶极核的多轴系统中,导致其弛豫的自旋1/2的跃迁通过偶极-偶极耦合与四极自旋的某些跃迁相关联。平均四极耦合归因于四极自旋的能级结构,并以此方式影响自旋1/2的弛豫过程。通常,四极自旋还表现出由偶极自旋感测到的复杂的多指数弛豫,作为互偶极-偶极耦合的附加调制。所提出的模型包括两种效应,并且对于任意磁场和任意四极自旋量子数均有效。该理论适用于解释LaF3离子晶体中的氟弛豫曲线。将获得的结果与“经典”所罗门松弛理论的预测进行比较。 (c)2005 Elsevier Inc.保留所有权利。

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