Zhu Xiaolei, Yarkony David R
Department of Chemistry, Johns Hopkins University, Baltimore, Maryland 21218, USA.
J Chem Phys. 2016 Jan 28;144(4):044104. doi: 10.1063/1.4939765.
We have recently introduced a diabatization scheme, which simultaneously fits and diabatizes adiabatic ab initio electronic wave functions, Zhu and Yarkony J. Chem. Phys. 140, 024112 (2014). The algorithm uses derivative couplings in the defining equations for the diabatic Hamiltonian, H(d), and fits all its matrix elements simultaneously to adiabatic state data. This procedure ultimately provides an accurate, quantifiably diabatic, representation of the adiabatic electronic structure data. However, optimizing the large number of nonlinear parameters in the basis functions and adjusting the number and kind of basis functions from which the fit is built, which provide the essential flexibility, has proved challenging. In this work, we introduce a procedure that combines adiabatic state and diabatic state data to efficiently optimize the nonlinear parameters and basis function expansion. Further, we consider using direct properties based diabatizations to initialize the fitting procedure. To address this issue, we introduce a systematic method for eliminating the debilitating (diabolical) singularities in the defining equations of properties based diabatizations. We exploit the observation that if approximate diabatic data are available, the commonly used approach of fitting each matrix element of H(d) individually provides a starting point (seed) from which convergence of the full H(d) construction algorithm is rapid. The optimization of nonlinear parameters and basis functions and the elimination of debilitating singularities are, respectively, illustrated using the 1,2,3,4(1)A states of phenol and the 1,2(1)A states of NH3, states which are coupled by conical intersections.
我们最近引入了一种 diabatic 化方案,它能同时拟合和 diabatic 化绝热从头算电子波函数,Zhu 和 Yarkony,《化学物理杂志》140,024112(2014 年)。该算法在 diabatic 哈密顿量 H(d) 的定义方程中使用导数耦合,并将其所有矩阵元同时拟合到绝热态数据。此过程最终提供了绝热电子结构数据的准确、可量化的 diabatic 表示。然而,优化基函数中的大量非线性参数以及调整用于构建拟合的基函数的数量和种类(这提供了基本的灵活性)已被证明具有挑战性。在这项工作中,我们引入了一种将绝热态和 diabatic 态数据相结合的方法,以有效地优化非线性参数和基函数展开。此外,我们考虑使用基于直接性质的 diabatic 化来初始化拟合过程。为了解决这个问题,我们引入了一种系统方法来消除基于性质的 diabatic 化定义方程中的有害(恶魔般的)奇点。我们利用这样一个观察结果:如果有近似 diabatic 数据可用,单独拟合 H(d) 的每个矩阵元的常用方法提供了一个起点(种子),从该起点开始,完整的 H(d) 构建算法的收敛速度很快。分别使用苯酚的 1,2,3,4(1)A 态和 NH3 的 1,2(1)A 态(通过锥形交叉耦合的态)说明了非线性参数和基函数的优化以及有害奇点的消除。