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SYMMETRY REDUCTION OF THE MATRIX ELEMENTS OF A TWO-PARTICLE OPERATOR

机译:二维算子的矩阵元素的对称约简

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Local coordinate systems are chosen for each quadruple of atoms relative to a four-enter integral, in order to avoid linear combinations of orbitals when symmetry operations perform on an orbital. This choice can utilize the complete molecular symmetry to attain the optimal number of symmetry-unique integrals and to construct two-particle matrix elements by multiplying symmetry-unique integrals, called the ''standard four-center integrals,'' by the corresponding coefficients, called the ''C coefficients.'' A simple algorithm to use the complete molecular symmetry to reduce calculations of molecular matrix elements is outlined for general highly symmetric molecules. A tetrahedral molecule is analyzed. (C) 1996 John Wiley & Sons, Inc. [References: 33]
机译:为相对于四输入整数的每个原子四倍选择局部坐标系,以避免在对轨道执行对称操作时避免轨道的线性组合。这种选择可以利用完整的分子对称性来获得最优数量的对称唯一积分,并通过将称为“标准四中心积分”的对称唯一积分乘以相应的系数来构造两个粒子的矩阵元素,称为“ C系数”。对于一般的高度对称分子,概述了一种使用完整分子对称性来减少分子基质元素的计算的简单算法。分析四面体分子。 (C)1996 John Wiley&Sons,Inc. [参考:33]

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