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首页> 外文期刊>International Journal of Quantum Chemistry >MOLECULAR GEOMETRY AND SYMMETRY FROM A DIFFERENTIAL GEOMETRY VIEWPOINT
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MOLECULAR GEOMETRY AND SYMMETRY FROM A DIFFERENTIAL GEOMETRY VIEWPOINT

机译:不同几何观点的分子几何和对称性

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摘要

Relations between an earlier generalization of molecular symmetry called symmorphy and a molecular equivalence based on diffeomorphisms of electron density functional graphs (the so-called DFG equivalence introduced in our previous work) are analyzed. Any two DFG-equivalent electron density functions can be derived from one another by a suitable transformation of the spatial coordinates and the electronic charge density scale; the classes of DFG equivalence are the orbits of a group of Linear operators operating in the space of electron density functions. Within the symmorphy framework, the symmetry group is derived from the symmorphy group by taking an intersection of a subgroup of the symmorphy group and the group of isometries for a natural choice of the Riemannian metric tenser. The Riemannian metric properties provide a choice for a suitable reference electron density function for each class of equivalent densities. Such reference densities serve as tools for a systematic classification of the infinite family of electron densities of molecular conformations. (C) 1997 John Wiley & Sons, Inc. [References: 80]
机译:分析了分子对称性的较早泛化(即对称性)与基于电子密度泛函图的亚同性的分子等价关系(在我们先前的工作中引入的所谓DFG等价关系)之间的关系。通过对空间坐标和电荷密度标度进行适当的转换,可以相互推导任意两个DFG等效电子密度函数; DFG等价类是在电子密度函数的空间中运行的一组线性算子的轨道。在同构框架内,对称组是从同构组派生的,方法是将同构组的子组与等距组相交,以自然选择黎曼度量张量。黎曼度量特性为每种等效密度类提供了合适的参考电子密度函数的选择。这样的参考密度用作对分子构象的无限电子密度族进行系统分类的工具。 (C)1997 John Wiley&Sons,Inc. [参考:80]

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