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Ab initio calculation of anharmonic vibrational states of polyatomic systems: Electronic structure combined with vibrational self-consistent field

机译:从头计算多原子系统的非谐振动态:电子结构与振动自洽场相结合

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摘要

An algorithm for first-principles calculation of vibrational spectroscopy of polyatomic molecules is proposed, which combines electronic ab initio codes with the vibrational self-consistent field (VSCF) method, and with a perturbation-theoretic extension of VSCF. The integrated method directly uses points on the potential energy surface, computed from the electronic ab initio code, in the VSCF part. No fitting of an analytic potential function is involved. A key element in the approach is the approximation that only interactions between pairs of normal modes are important, while interactions of triples or more can be neglected. This assumption was found to hold well in applications. The new algorithm was applied to the fundamental vibrational excitations of H_2O, Cl~-(H_2O), and (H_2O)_2, using the Moller-Plesset method for the electronic structure. The vibrational frequencies found are in very good accord with experiments. Estimates suggest that this electronic ab initio/VSCF approach should be feasible, with reasonable computational resources, for all-mode calculations of vibrational energies and wave functions for systems of up to 10-15 atoms. The new method can be also very useful for testing the accuracy of electronic structure codes by comparing with experimental vibrational spectroscopy.
机译:提出了一种多原子分子振动光谱的第一性原理计算算法,该算法结合了电子从头算与振动自洽场(VSCF)方法以及VSCF的扰动理论扩展。集成方法直接使用VSCF部分中从电子从头算起的势能面上的点。不涉及分析势函数的拟合。该方法的一个关键要素是近似值,即仅正常模式对之间的相互作用很重要,而三元或更多的相互作用则可以忽略。发现该假设在应用程序中适用。利用Moller-Plesset方法对电子结构进行了H_2O,Cl〜-(H_2O)和(H_2O)_2基本振动激发的新算法的研究。发现的振动频率与实验非常吻合。估计表明,这种电子的从头算/ VSCF方法应该可行,并且具有合理的计算资源,可以用于最多10-15个原子的系统的振动能和波函数的全模式计算。通过与实验振动光谱法进行比较,该新方法对于测试电子结构代码的准确性也可能非常有用。

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