首页> 外文期刊>The Journal of Chemical Physics >Global analytical potential hypersurfaces for large amplitude nuclear motion and reactions in methane. I. Formulation of the potentials and adjustment of parameters to ab initio data and experimental constraints
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Global analytical potential hypersurfaces for large amplitude nuclear motion and reactions in methane. I. Formulation of the potentials and adjustment of parameters to ab initio data and experimental constraints

机译:用于大幅度核运动和甲烷反应的全局分析潜在超曲面。 I.势的公式化和从头算数据和实验约束的参数调整

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Analytical representations of the global potential energy surface of XYn molecules are developed and applied to model the potential surface of methane in the electronic ground state. The generic analytical representation allows for a compact, robust, and flexible description of potentials fur XYn systems irrespective of the specific nature of the atomic interactions. The functions are global in that structures near several minima of the potential hypersurface as well as saddle points and dissociation limits are well described. Clusters of atoms Y-n can be represented as well by this type of function. Care is taken to implement conditions resulting from the symmetric group S-n and to construct positive definite bilinear forms of special functional forms of certain coordinates (such as bond lengths and bond angles), in order to avoid artifacts in exceptional ranges of the potential hypersurface. These special functional forms include intrinsic, symmetry allowed couplings between coordinates such as bending and stretching. We include linear potential terms in bond angle coordinates, which result in effectively quadratic potential terms for highly symmetric structures. True logical multidimensional 01-switching functions S-sw(r) of bond lengths r are used to interpolate between limiting ranges in the hypersurface. The particular form S-sw(r) similar to exp(-(r(sw)/r)(nsw)) allows us to describe the potential as a multipole expansion representation in the lirlit of large r(ix). In the application to methane, first the representations are fitted to data from high level ab initio calculations using multireference configuration interaction techniques. Additional conditions which help to improve the description of experimental data are considered during the fit. Typically, these conditions involve some parameters or parameter groups and refer to the equilibrium geometry and harmonic force field. Other constraints apply to the energies of dissociation channels. We describe the model potentials METPOT 1 to METPOT 4 in the present work. (C) 1998 American Institute of Physics. [S0021-9606(98)01045-9]. [References: 97]
机译:XYn分子的整体势能面的分析表示已开发并应用于模拟电子基态下甲烷的势能面。通用分析表示法可以对XYn系统的势能进行紧凑,鲁棒和灵活的描述,而与原子相互作用的具体性质无关。这些函数具有全局性,因为已很好地描述了潜在超曲面的几个极小值附近的结构以及鞍点和解离极限。原子Y-n的簇也可以用这种类型的函数表示。小心执行由对称组S-n产生的条件,并构造某些坐标(例如键长和键角)的特殊功能形式的正定双线性形式,以避免潜在超曲面的异常范围内的伪影。这些特殊的功能形式包括坐标之间固有的,对称的耦合,例如弯曲和拉伸。我们在键角坐标中包含线性势项,从而可以为高度对称的结构有效地产生二次势项。键长为r的真逻辑多维01切换函数S-sw(r)用于在超曲面的极限范围之间进行插值。与exp(-(r(sw)/ r)(nsw))类似的特殊形式S-sw(r)允许我们将势能描述为大r(ix)的多极展开表示。在甲烷的应用中,首先使用多参考组态交互技术将表示形式拟合到高级从头算的数据中。在拟合过程中考虑了有助于改善实验数据描述的其他条件。通常,这些条件涉及一些参数或参数组,并且涉及平衡几何形状和谐波力场。其他约束条件适用于解离通道的能量。我们在当前工作中描述了模型潜力METPOT 1至METPOT 4。 (C)1998美国物理研究所。 [S0021-9606(98)01045-9]。 [参考:97]

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