Linear-scaling generation of potential energy surfaces using a double incremental expansion

Carolin Konig, O. Christiansen
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引用次数: 40

Abstract

We present a combination of the incremental expansion of potential energy surfaces (PESs), known as n-mode expansion, with the incremental evaluation of the electronic energy in a many-body approach. The application of semi-local coordinates in this context allows the generation of PESs in a very cost-efficient way. For this, we employ the recently introduced flexible adaptation of local coordinates of nuclei (FALCON) coordinates. By introducing an additional transformation step, concerning only a fraction of the vibrational degrees of freedom, we can achieve linear scaling of the accumulated cost of the single point calculations required in the PES generation. Numerical examples of these double incremental approaches for oligo-phenyl examples show fast convergence with respect to the maximum number of simultaneously treated fragments and only a modest error introduced by the additional transformation step. The approach, presented here, represents a major step towards the applicability of vibrational wave function methods to sizable, covalently bound systems.
使用双增量展开的势能曲面的线性缩放生成
我们提出了势能面(PESs)的增量扩展,即n模扩展,与多体方法中电子能量的增量评估相结合。在这种情况下,半局部坐标的应用允许以一种非常经济有效的方式产生ps。为此,我们采用了最近引入的核局部坐标的灵活自适应(FALCON)坐标。通过引入一个额外的变换步骤,只涉及振动自由度的一小部分,我们可以实现PES生成所需的单点计算累积成本的线性缩放。对于低聚苯基的例子,这些双增量方法的数值例子表明,相对于同时处理的片段的最大数量,这些方法的收敛速度很快,并且仅由额外的转换步骤引入了适度的误差。该方法,在这里提出,代表了一个重要的一步,振动波函数方法适用于相当大的,共价结合的系统。
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