首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Water 16-mers and hexamers: Assessment of the three-body and electrostatically embedded many-body approximations of the correlation energy or the nonlocal energy as ways to include cooperative effects
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Water 16-mers and hexamers: Assessment of the three-body and electrostatically embedded many-body approximations of the correlation energy or the nonlocal energy as ways to include cooperative effects

机译:水16聚体和六聚体:评估相关能量或非局部能量的三体和静电嵌入多体近似,以作为包括协同效应的方法

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This work presents a new fragment method, the electrostatically embedded many-body expansion of the nonlocal energy (EE-MB-NE), and shows that it, along with the previously proposed electrostatically embedded many-body expansion of the correlation energy (EE-MB-CE), produces accurate results for large systems at the level of CCSD(T) coupled cluster theory. We primarily study water 16-mers, but we also test the EE-MB-CE method on water hexamers. We analyze the distributions of two-body and three-body terms to show why the many-body expansion of the electrostatically embedded correlation energy converges faster than the many-body expansion of the entire electrostatically embedded interaction potential. The average magnitude of the dimer contributions to the pairwise additive (PA) term of the correlation energy (which neglects cooperative effects) is only one-half of that of the average dimer contribution to the PA term of the expansion of the total energy; this explains why the mean unsigned error (MUE) of the EE-PA-CE approximation is only one-half of that of the EE-PA approximation. Similarly, the average magnitude of the trimer contributions to the three-body (3B) term of the EE-3B-CE approximation is only one-fourth of that of the EE-3B approximation, and the MUE of the EE-3B-CE approximation is one-fourth that of the EE-3B approximation. Finally, we test the efficacy of two- and three-body density functional corrections. One such density functional correction method, the new EE-PA-NE method, with the OLYP or the OHLYP density functional (where the OHLYP functional is the OptX exchange functional combined with the LYP correlation functional multiplied by 0.5), has the best performance-to-price ratio of any method whose computational cost scales as the third power of the number of monomers and is competitive in accuracy in the tests presented here with even the electrostatically embedded three-body approximation.
机译:这项工作提出了一种新的碎片方法,即非局部能量的静电嵌入多体扩展(EE-MB-NE),并表明它与先前提出的相关能量的静电嵌入多体扩展。 MB-CE),可以在CCSD(T)耦合聚类理论的水平上为大型系统提供准确的结果。我们主要研究16聚体的水,但也测试了六聚体的EE-MB-CE方法。我们分析了两体和三体项的分布,以显示为什么静电嵌入的相关能量的多体膨胀收敛速度快于整个静电嵌入的相互作用势的多体膨胀。相关能量的成对加性(PA)项的二聚体贡献的平均幅度(忽略了协同效应)仅是总能量扩展的PA项的平均二聚体贡献的一半。这就解释了为什么EE-PA-CE近似的平均无符号误差(MUE)仅是EE-PA近似的平均无符号误差的一半。同样,对于EE-3B-CE近似的三体(3B)项,三聚体贡献的平均幅度仅为EE-3B近似和EE-3B-CE的MUE的四分之一。近似值是EE-3B近似值的四分之一。最后,我们测试了两体和三体密度功能校正的功效。一种这样的密度泛函校正方法,即新的EE-PA-NE方法,具有OLYP或OHLYP密度泛函(其中OHLYP泛函是OptX交换泛函与LYP相关泛函相乘0.5),具有最佳的性能-计算成本成比例为单体数量的三次方的任何方法的价格比,甚至在采用静电嵌入三体近似法的情况下,在此处介绍的测试中,精度都具有竞争力。

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