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首页> 外文期刊>The Journal of Chemical Physics >Computer program ATOM-MOL-nonBO for performing calculations of ground and excited states of atoms and molecules without assuming the Born-Oppenheimer approximation using all-particle complex explicitly correlated Gaussian functions
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Computer program ATOM-MOL-nonBO for performing calculations of ground and excited states of atoms and molecules without assuming the Born-Oppenheimer approximation using all-particle complex explicitly correlated Gaussian functions

机译:计算机程序原子 - Mol-Nonbo用于在不假设使用全粒子复合物明确相关的高斯函数的出生 - 对立的对立大使近似的原子和分子的计算的计算

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In this work, we describe a computer program called ATOM-MOL-nonBO for performing bound state calculations of small atoms and molecules without assuming the Born-Oppenheimer approximation. All particles forming the systems, electrons and nuclei, are treated on equal footing. The wave functions of the bound states are expanded in terms of all-particle one-center complex explicitly correlated Gaussian functions multiplied by Cartesian angular factors. As these Gaussian functions are eigenfunctions of the operator representing the square of the total angular momentum of the system, the problem separates and calculations of states corresponding to different values of the total rotational quantum number can be solved independently from each other. Due to thorough variational optimization of the Gaussian exponential parameters, the method allows us to generate very accurate wave functions. The optimization is aided by analytically calculated energy gradient determined with respect to the parameters. Three examples of calculations performed for diatomic and triatomic molecules are shown as an illustration of calculations that can be performed with this program. Finally, we discuss the limitations, applicability range, and bottlenecks of the program.
机译:在这项工作中,我们描述了一种称为Atom-Mol-NONBO的计算机程序,用于在不假设出生的对立海线近似的情况下执行小原子和分子的结合状态计算。形成系统,电子和核的所有颗粒都在等于基础上进行处理。绑定状态的波函数在全粒子单中心复杂明确相关的高斯函数乘以笛卡尔角因子的术语。由于这些高斯函数是表示系统的总角动量的正方形的操作者的特征函数,因此可以独立地互相解决与总旋转量子数的不同值的问题分离和计算的状态。由于高斯指数参数的彻底变分优化,该方法允许我们产生非常精确的波函数。通过针对参数确定的分析计算的能量梯度来辅助优化。针对硅藻和三语分子进行的三种计算的示例被示出为可以用该程序执行的计算的图示。最后,我们讨论了程序的限制,适用性范围和瓶颈。

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