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SEMIDIRECT ALGORITHMS FOR 3RD-ORDER ELECTRON PROPAGATOR CALCULATIONS

机译:用于三阶电子传播器计算的理想算法

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An efficient procedure for third-order electron propagator calculations of ionization energie- and electron affinities is reported. Diagonal self-energy expressions that are suitable for large molecules are employed. The outer-valence Green's function method also is implemented. An integral transformation program for direct and semidirect algorithms is modified to store only nonzero integrals according to Abelian point group symmetry. Contributions to self-energy matrix elements that depend on electron repulsion integrals with four virtual orbital indices are computed in a direct way. Intermediate batches of integrals are created by sort procedures while avoiding storage of transformed integrals in the main memory. This method permits calculation of electron binding energies for C7(2-) with a 231 atomic orbital basis and for Zn(C5H5)2 with a 220 atomic orbital basis on an IBM RISC/6000 Model 550. During these calculations, the CPU is engaged approximately 90% of the time. (C) 1995 John Wiley & Sons, Inc. [References: 34]
机译:报告了一种有效的程序,用于计算电离能和电子亲和力的三阶电子传播器。使用适合于大分子的对角自能量表达。还实现了外价格林函数方法。直接和半直接算法的积分转换程序已修改为根据Abelian点组对称性仅存储非零积分。以直接方式计算依赖于具有四个虚拟轨道指数的电子排斥积分的自能矩阵元素的贡献。通过排序过程创建中间批次的积分,同时避免将转换后的积分存储在主存储器中。这种方法允许根据IBM RISC / 6000 550型计算C231(2-)具有231原子轨道的电子结合能和Zn(C5H5)2具有220原子轨道的电子结合能。在这些计算过程中,CPU处于接合状态大约有90%的时间。 (C)1995 John Wiley&Sons,Inc. [参考:34]

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