首页> 外文期刊>The Journal of Chemical Physics >Algebraic-diagrammatic construction scheme for the polarization propagator including ground-state coupled-cluster amplitudes. II. Static polarizabilities
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Algebraic-diagrammatic construction scheme for the polarization propagator including ground-state coupled-cluster amplitudes. II. Static polarizabilities

机译:用于偏振传播器的代数 - 示意施工方案,包括地态耦合簇幅度。 II。 静态偏振

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The modification of the algebraic-diagrammatic construction (ADC) scheme for the polarization propagator using ground-state coupled cluster (CC) instead of Moller-Plesset (MP) amplitudes, referred to as CC-ADC, is extended to the calculation of molecular properties, in particular, dipole polarizabilities. Furthermore, in addition to CC with double excitations (CCD), CC with single and double excitations (CCSD) amplitudes can be used, also in the second-order transition moments of the ADC(3/2) method. In the second-order CC-ADC(2) variants, the MP correlation coefficients occurring in ADC are replaced by either CCD or CCSD amplitudes, while in the F/CC-ADC(2) and F/CC-ADC(3/2) variants, they are replaced only in the second-order modified transition moments. These newly implemented variants are used to calculate the static dipole polarizability of several small- to medium-sized molecules, and the results are compared to the ones obtained by full configuration interaction or experiment. It is shown that the results are consistently improved by the use of CC amplitudes, in particular, for aromatic systems such as benzene or pyridine, which have proven to be difficult cases for standard ADC approaches. In this case, the second-order CC-ADC(2) and F/CC-ADC(2) variants yield significantly better results than the standard third-order ADC(3/2) method, at a computational cost amounting to only about 1% of the latter. Published under license by AIP Publishing.
机译:使用地面耦合簇(CC)代替Moller-Plesset(MP)幅度的偏振传播器的代数 - 示意性结构(ADC)方案的修改延伸到分子特性的计算,特别是偶极偏振性。此外,除了具有双激发(CCD)的CC之外,还可以使用单一和双激发(CCSD)幅度的CC,也在ADC(3/2)方法的二阶转换矩。在二阶CC-ADC(2)变型中,ADC中发生的MP相关系数由CCD或CCSD幅度替换,而在F / CC-ADC(2)和F / CC-ADC中(3/2 )变体,它们仅在二阶修改的过渡时刻替换。这些新实施的变体用于计算若干小于中等分子的静态偶极极化性,并将结果与​​通过全配置相互作用或实验获得的结果进行比较。结果表明,通过使用CC幅度,特别是对于诸如苯或吡啶的芳族系统,可以始终如一地改善,这已经证明是标准ADC方法的困难案例。在这种情况下,二阶CC-ADC(2)和F / CC-ADC(2)变体比标准的三阶ADC(3/2)方法产生显着更好的结果,其计算成本仅限于后者的1%。通过AIP发布在许可证下发布。

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