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首页> 外文期刊>The Journal of Chemical Physics >Periodic local MP2 method employing orbital specific virtuals
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Periodic local MP2 method employing orbital specific virtuals

机译:采用轨道特定虚拟的周期性本地MP2方法

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We introduce orbital specific virtuals (OSVs) to represent the truncated pair-specific virtual space in periodic local Moller-Plesset perturbation theory of second order (LMP2). The OSVs are constructed by diagonalization of the LMP2 amplitude matrices which correspond to diagonal Wannier-function (WF) pairs. Only a subset of these OSVs is adopted for the subsequent OSV-LMP2 calculation, namely, those with largest contribution to the diagonal pair correlation energy and with the accumulated value of these contributions reaching a certain accuracy. The virtual space for a general (non diagonal) pair is spanned by the union of the two OSV sets related to the individual WFs of the pair. In the periodic LMP2 method, the diagonal LMP2 amplitude matrices needed for the construction of the OSVs are calculated in the basis of projected atomic orbitals (PAOs), employing very large PAO domains. It turns out that the OSVs are excellent to describe short range correlation, yet less appropriate for long range van der Waals correlation. In order to compensate for this bias towards short range correlation, we augment the virtual space spanned by the OSVs by the most diffuse PAOs of the corresponding minimal PAO domain. The Fock and overlap matrices in OSV basis are constructed in the reciprocal space. The 4-index electron repulsion integrals are calculated by local density fitting and, for distant pairs, via multipole approximation. New procedures for determining the fit-domains and the distant-pair lists, leading to higher efficiency in the 4-index integral evaluation, have been implemented. Generally, and in contrast to our previous PAO based periodic LMP2 method, the OSV-LMP2 method does not require anymore great care in the specification of the individual domains (to get a balanced description when calculating energy differences) and is in that sense a black box procedure. Discontinuities in potential energy surfaces, which may occur for PAO-based calculations if one is not careful, virtually disappear for OSV-LMP2. Moreover, due to much increased compactness of the pair-specific virtual spaces, the OSV-LMP2 calculations are faster and require much less memory than PAO-LMP2 calculations, despite the noticeable overhead of the initial OSV construction procedure. (C) 2015 AIP Publishing LLC.
机译:在二阶周期性局部Moller-Plesset微扰理论(LMP2)中,我们引入了轨道特定虚拟(OSV)来表示截短的一对特定虚拟空间。 OSV通过LMP2幅度矩阵的对角化来构建,该矩阵对应于对角的Wannier函数(WF)对。这些OSV的仅一个子集用于随后的OSV-LMP2计算,即,对角对相关能量贡献最大且这些贡献的累加值达到一定精度的那些。通用(非对角线)对的虚拟空间由与该对的各个WF相关的两个OSV集的并集来跨越。在周期性LMP2方法中,构造OSV所需的对角线LMP2幅度矩阵是在投影原子轨道(PAO)的基础上,采用非常大的PAO域来计算的。事实证明,OSV非常适合描述短程相关,但不适用于长程范德华相关。为了补偿这种对短程相关性的偏见,我们将OSV跨越的虚拟空间增加了对应的最小PAO域中最分散的PAO。在互易空间中构造以OSV为基础的Fock和重叠矩阵。 4指数电子排斥积分通过局部密度拟合计算,对于远距离对,则通过多极近似法计算。已经实施了确定拟合域和远对列表的新程序,从而提高了4指数积分评估的效率。通常,与我们以前的基于PAO的定期LMP2方法相比,OSV-LMP2方法不再需要特别注意各个域的规范(在计算能量差时获得平衡的描述),因此在这种意义上,黑色框过程。如果不小心,基于PAO的计算可能会发生势能面中的不连续性,而对于OSV-LMP2则几乎消失了。而且,由于特定于对的虚拟空间的紧密度大大提高,尽管最初的OSV构造过程有明显的开销,但OSV-LMP2的计算比PAO-LMP2的计算更快,所需的内存也少得多。 (C)2015 AIP Publishing LLC。

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