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尺寸扩展振动自洽场方法。

Size-extensive vibrational self-consistent field method.

机构信息

Department of Chemistry, University of Illinois at Urbana-Champaign, 600 South Mathews Avenue, Urbana, Illinois 61801, USA.

出版信息

J Chem Phys. 2011 Oct 7;135(13):134108. doi: 10.1063/1.3644895.

DOI:10.1063/1.3644895
PMID:21992283
Abstract

The vibrational self-consistent field (VSCF) method is a mean-field approach to solve the vibrational Schrödinger equation and serves as a basis of vibrational perturbation and coupled-cluster methods. Together they account for anharmonic effects on vibrational transition frequencies and vibrationally averaged properties. This article reports the definition, programmable equations, and corresponding initial implementation of a diagrammatically size-extensive modification of VSCF, from which numerous terms with nonphysical size dependence in the original VSCF equations have been eliminated. When combined with a quartic force field (QFF), this compact and strictly size-extensive VSCF (XVSCF) method requires only quartic force constants of the ∂(4)V/∂Q(i)(2)∂Q(j)(2) type, where V is the electronic energy and Q(i) is the ith normal coordinate. Consequently, the cost of a XVSCF calculation with a QFF increases only quadratically with the number of modes, while that of a VSCF calculation grows quartically. The effective (mean-field) potential of XVSCF felt by each mode is shown to be harmonic, making the XVSCF equations subject to a self-consistent analytical solution without matrix diagonalization or a basis-set expansion, which are necessary in VSCF. Even when the same set of force constants is used, XVSCF is nearly three orders of magnitude faster than VSCF implemented similarly. Yet, the results of XVSCF and VSCF are shown to approach each other as the molecular size is increased, implicating the inclusion of unnecessary, nonphysical terms in VSCF. The diagrams of the XVSCF energy expression and their evaluation rules are also proposed, underscoring their connected structures.

摘要

振动自洽场(VSCF)方法是一种求解振动薛定谔方程的平均场方法,是振动微扰和耦合簇方法的基础。它们共同考虑了振动跃迁频率和振动平均性质的非谐效应。本文报道了 VSCF 的一种图论大小扩展修正的定义、可编程方程和相应的初步实现,该修正消除了原始 VSCF 方程中许多具有非物理大小依赖性的项。当与四次力场(QFF)结合使用时,这种紧凑且严格大小扩展的 VSCF(XVSCF)方法仅需要 ∂(4)V/∂Q(i)(2)∂Q(j)(2) 类型的四次力常数,其中 V 是电子能量,Q(i)是第 i 个正则坐标。因此,XVSCF 与 QFF 的计算成本仅随模式数的平方增加,而 VSCF 的计算成本则随模式数的四次增加。每个模式感受到的 XVSCF 的有效(平均场)势能被证明是谐和的,这使得 XVSCF 方程可以进行自洽的解析解,而无需矩阵对角化或基组展开,这在 VSCF 中是必要的。即使使用相同的力常数集,XVSCF 的速度也比类似实现的 VSCF 快近三个数量级。然而,随着分子尺寸的增加,XVSCF 和 VSCF 的结果趋于接近,这表明 VSCF 中包含了不必要的、非物理的项。还提出了 XVSCF 能量表达式的图及其评估规则,强调了它们的连接结构。

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