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首页> 外文期刊>The Journal of Chemical Physics >The tensor hypercontracted parametric reduced density matrix algorithm: Coupled-cluster accuracy with O(r~4) scaling
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The tensor hypercontracted parametric reduced density matrix algorithm: Coupled-cluster accuracy with O(r~4) scaling

机译:张量超收缩参数化约简矩阵算法:O(r〜4)标度的耦合簇精度

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Tensor hypercontraction is a method that allows the representation of a high-rank tensor as a product of lower-rank tensors. In this paper, we show how tensor hypercontraction can be applied to both the electron repulsion integral tensor and the two-particle excitation amplitudes used in the parametric 2-electron reduced density matrix (p2RDM) algorithm. Because only O(r) auxiliary functions are needed in both of these approximations, our overall algorithm can be shown to scale as O(r~4), where r is the number of single-particle basis functions. We apply our algorithm to several small molecules, hydrogen chains, and alkanes to demonstrate its low formal scaling and practical utility. Provided we use enough auxiliary functions, we obtain accuracy similar to that of the standard p2RDM algorithm, somewhere between that of CCSD and CCSD(T).
机译:张量超收缩是一种允许将高等级张量表示为低等级张量的乘积的方法。在本文中,我们展示了张量超压缩如何应用于电子排斥积分张量和参数2电子降密度矩阵(p2RDM)算法中使用的两粒子激发振幅。由于在这两个近似值中仅需要O(r)辅助函数,因此我们的总体算法可以显示为O(r〜4),其中r是单粒子基函数的数量。我们将我们的算法应用于几个小分子,氢链和烷烃,以证明其较低的形式化规模和实用性。如果我们使用足够的辅助功能,我们将获得与标准p2RDM算法相似的精度,介于CCSD和CCSD(T)之间。

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