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Vibrational quasi-degenerate perturbation theory with optimized coordinates: Applications to ethylene and trans-1,3-butadiene

机译:具有优化坐标的振动准简并摄动理论:在乙烯和反式1,3-丁二烯中的应用

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A perturbative extension to optimized coordinate vibrational self-consistent field (oc-VSCF) is proposed based on the quasi-degenerate perturbation theory (QDPT). A scheme to construct the degenerate space (P space) is developed, which incorporates degenerate configurations and alleviates the divergence of perturbative expansion due to localized coordinates in oc-VSCF (e.g., local O–H stretching modes of water). An efficient configuration selection scheme is also implemented, which screens out the Hamiltonian matrix element between the P space configuration (p) and the complementary Q space configuration (q) based on a difference in their quantum numbers (λ_(pq)= ∑_s|p_s ? q_s|). It is demonstrated that the second-order vibrational QDPT based on optimized coordinates (oc-VQDPT2) smoothly converges with respect to the order of the mode coupling, and outperforms the conventional one based on normal coordinates. Furthermore, an improved, fast algorithm is developed for optimizing the coordinates. First, the minimization of the VSCF energy is conducted in a restricted parameter space, in which only a portion of pairs of coordinates is selectively transformed. A rational index is devised for this purpose, which identifies the important coordinate pairs to mix from others that may remain unchanged based on the magnitude of harmonic coupling induced by the transformation. Second, a cubic force field (CFF) is employed in place of a quartic force field, which bypasses intensive procedures that arise due to the presence of the fourth-order force constants. It is found that oc-VSCF based on CFF together with the pair selection scheme yields the coordinates similar in character to the conventional ones such that the final vibrational energy is affected very little while gaining an order of magnitude acceleration. The proposed method is applied to ethylene and trans-1,3-butadiene. An accurate, multi-resolution potential, which combines the MP2 and coupled-cluster with singles, doubles, and perturbative triples level of electronic structure theory, is generated and employed in the oc-VQDPT2 calculation to obtain the fundamental tones as well as selected overtones/combination tones coupled to the fundamentals through the Fermi resonance. The calculated frequencies of ethylene and trans-1,3-butadiene are found to be in excellent agreement with the experimental values with a mean absolute error of 8 and 9 cm~(?1), respectively.
机译:基于准简并摄动理论(QDPT),提出了对最优坐标振动自洽场(oc-VSCF)的摄动扩展。开发了构造简并空间(P空间)的方案,该方案结合了简并配置并减轻了由于oc-VSCF中的局部坐标(例如,水的局部O–H拉伸模式)而引起的扰动膨胀的发散。还实现了一种有效的配置选择方案,该方案基于量子空间的差(λ_(pq)= ∑_s |)在P空间配置(p)和互补Q空间配置(q)之间筛选出哈密顿矩阵元素。 p_s?q_s |)。结果表明,基于优化坐标的二次振动QDPT(oc-VQDPT2)相对于模式耦合的阶数平滑收敛,并且优于基于法向坐标的常规振动QDPT。此外,开发了一种改进的快速算法来优化坐标。首先,在受限的参数空间中进行VSCF能量的最小化,在该空间中,仅选择性地变换了一对坐标对的一部分。为此目的设计了一个合理的索引,该索引根据变换引起的谐波耦合的大小,识别出可能要保持不变的其他重要坐标对。第二,采用三次力场(CFF)代替四次力场,该函数避免了由于四阶力常数的存在而产生的密集过程。已经发现,基于CFF的oc-VSCF与对选择方案一起产生的特征与常规坐标相似的坐标,使得最终振动能量的影响很小,同时获得了一个数量级的加速度。该方法适用于乙烯和反式1,3-丁二烯。产生了一种准确的,多分辨率的电势,它将MP2和耦合集群与单声,双声和微扰三重声级的电子结构理论结合在一起,并用于oc-VQDPT2计算中,从而获得基本音调和选定的泛音/组合音通过费米共振耦合到基本音。发现乙烯和反式1,3-丁二烯的计算频率与实验值非常吻合,平均绝对误差分别为8和9 cm〜(?1)。

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