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电流密度张量。

Current density tensors.

机构信息

Istituto di Struttura della Materia, Consiglio Nazionale delle Ricerche, Via del Fosso del Cavaliere 100, 00133 Roma, Italy.

出版信息

J Chem Phys. 2018 Apr 7;148(13):134109. doi: 10.1063/1.5025046.

Abstract

It is shown that nonsymmetric second-rank current density tensors, related to the current densities induced by magnetic fields and nuclear magnetic dipole moments, are fundamental properties of a molecule. Together with magnetizability, nuclear magnetic shielding, and nuclear spin-spin coupling, they completely characterize its response to magnetic perturbations. Gauge invariance, resolution into isotropic, deviatoric, and antisymmetric parts, and contributions of current density tensors to magnetic properties are discussed. The components of the second-rank tensor properties are rationalized via relationships explicitly connecting them to the direction of the induced current density vectors and to the components of the current density tensors. The contribution of the deviatoric part to the average value of magnetizability, nuclear shielding, and nuclear spin-spin coupling, uniquely determined by the antisymmetric part of current density tensors, vanishes identically. The physical meaning of isotropic and anisotropic invariants of current density tensors has been investigated, and the connection between anisotropy magnitude and electron delocalization has been discussed.

摘要

研究表明,与磁场和核磁矩引起的电流密度有关的非对称二阶电流密度张量是分子的基本特性。与磁化率、核磁共振屏蔽和核自旋-自旋耦合一起,它们完全描述了分子对磁场扰动的响应。本文讨论了规范不变性、各向同性、偏斜和反对称部分的分解,以及电流密度张量对磁性质的贡献。二阶张量性质的分量通过与感应电流密度矢量的方向以及电流密度张量的分量明确相关的关系进行合理化。由电流密度张量的反对称部分唯一确定的偏斜部分对磁化率、核屏蔽和核自旋-自旋耦合的平均值的贡献恒为零。本文还研究了电流密度张量各向同性和各向异性不变量的物理意义,并讨论了各向异性大小与电子离域化之间的关系。

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