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首页> 外文期刊>The Journal of Chemical Physics >Stochastic Liouville equation treatment of the electron paramagnetic resonance line shape of an S-state ion in solution
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Stochastic Liouville equation treatment of the electron paramagnetic resonance line shape of an S-state ion in solution

机译:溶液中S态离子的电子顺磁共振线形的随机Liouville方程处理

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The current approaches used for the analysis of electron paramagnetic resonance spectra of Gd3+complexes suffer from a number of drawbacks.Even the elaborate model of [Rast et al,J.Chem.Phys.113,8724 (2000)] where the electron spin relaxation is explained by the modulation of the zero-field splitting (ZFS),by molecular tumbling (the so called static contribution),and deformations (transient contribution),is only readily applicable within the validity range of the Redfield theory (Advances in Magnetic Resonance,edited by J.-S.Waugh (Academic,New York,1965),Vol.1,p.1],that is,when the ZFS is small compared to the Zeeman energy and the rotational and vibrational modulations are fast compared to the relaxation time.Spin labels (nitroxjdes and transition metal complexes) have been studied for years in systems that violate these conditions.The theoretical framework commonly used in such studies is the stochastic Liouville equation (SLE).The authors shall show how the physical model of Rast et al.can be cast into the SLE formalism,paying special attention to the specific problems introduced by the [Uhlenbeck and Ornstein,Phys.Rev.36,823 (1930)] process used to model the transient ZFS.The resulting equations are very general and valid for arbitrary correlation times,magnetic field strength,electron spin S,or symmetry.The.authors demonstrate the equivalence of the SLE approach with the Redfield approximation for two well-known Gd3+complexes.
机译:目前用于分析Gd3 +络合物的电子顺磁共振谱的方法存在许多缺点。即使是[Rast等人,J.Chem.Phys.113,8724(2000)的详尽模型)弛豫可以通过零场分裂(ZFS)的调制,分子翻滚(所谓的静态贡献)和变形(瞬态贡献)来解释,仅在Redfield理论的有效范围内容易应用(电磁学的进展共振,由J.-S.Waugh编辑(纽约,Academic,1965年,第1卷,第1页),也就是说,当ZFS小于塞曼能量时,ZFS较小,旋转和振动调制速度较快旋转标记(硝基氧化物和过渡金属配合物)已经在违反这些条件的系统中研究了多年,这些研究中常用的理论框架是随机的Liouville方程(SLE)。 Rast e的模型可以将其转化为SLE形式主义,要特别注意[Uhlenbeck and Ornstein,Phys.Rev.36,823(1930)]过程用来为瞬态ZFS建模的过程所引入的特定问题。对任意相关时间,磁场强度,电子自旋S或对称性有效。作者证明了两种著名的Gd3 +络合物的SLE方法与Redfield近似的等效性。

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