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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Construction of Quasi-diabatic Hamiltonians That Accurately Represent ab Initio Determined Adiabatic Electronic States Coupled by Conical Intersections for Systems on the Order of 15 Atoms. Application to Cyclopentoxide Photoelectron Detachment in the Full 39 Degrees of Freedom
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Construction of Quasi-diabatic Hamiltonians That Accurately Represent ab Initio Determined Adiabatic Electronic States Coupled by Conical Intersections for Systems on the Order of 15 Atoms. Application to Cyclopentoxide Photoelectron Detachment in the Full 39 Degrees of Freedom

机译:准确地代表AB Initio的准型杂散Hamiltonians的构建确定了由15个原子的锥形交叉口耦合的绝热电子国家。 应用于环戊氧化物光电子脱离的完整39点自由

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摘要

We present, for systems of moderate dimension, a fitting framework to construct quasi-diabatic Hamiltonians that accurately represent ab initio adiabatic electronic structure data including the effects of conical intersections. The framework introduced here minimizes the difference between the fit prediction and the ab initio data obtained in the adiabatic representation, which is singular at a conical intersection seam. We define a general and flexible merit function to allow arbitrary representations and propose a representation to measure the fit-ab initio difference at geometries near electronic degeneracies. A fit Hamiltonian may behave poorly in insufficiently sampled regions, in which case a machine learning theory analysis of the fit representation suggests a regularization to address the deficiency. Our fitting framework including the regularization is used to construct the full 39-dimensional coupled diabatic potential energy surfaces for cyclopentoxy relevant to cyclopentoxide photoelectron detachment.
机译:我们展示了适度维度的系统,构建准确代表AB Initio绝热电子结构数据的准型型哈密顿人的拟合框架,包括锥形交叉口的影响。这里介绍的框架最大限度地减少了在绝热表示中获得的拟合预测和AB初始数据之间的差异,这在锥形交叉接缝处是奇异的。我们定义了一般和灵活的优点函数,以允许任意表示,并提出一种表示来测量电子退化附近的几何形状的Fit-AB Initio差异。适合汉密尔顿人可能在采样不充分的地区表现不佳,在这种情况下,适合代表的机器学习理论分析表明正则化以解决缺陷。包括规则化的拟合框架用于构建完整的39维耦合型型型尿布潜在能量表面,用于与环戊氧化物光电子脱离相关的环戊氧基。

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