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LiH 分子的高精度势能曲线。

Very accurate potential energy curve of the LiH molecule.

机构信息

Department of Chemistry and Biochemistry, The University of Arizona, Tucson, Arizona 85721, USA.

出版信息

J Chem Phys. 2011 Feb 14;134(6):064117. doi: 10.1063/1.3554211.

DOI:10.1063/1.3554211
PMID:21322671
Abstract

We present very accurate calculations of the ground-state potential energy curve (PEC) of the LiH molecule performed with all-electron explicitly correlated Gaussian functions with shifted centers. The PEC is generated with the variational method involving simultaneous optimization of all Gaussians with an approach employing the analytical first derivatives of the energy with respect to the Gaussian nonlinear parameters (i.e., the exponents and the coordinates of the shifts). The LiH internuclear distance is varied between 1.8 and 40 bohrs. The absolute accuracy of the generated PEC is estimated as not exceeding 0.3 cm(-1). The adiabatic corrections for the four LiH isotopologues, i.e., (7)LiH, (6)LiH, (7)LiD, and (6)LiD, are also calculated and added to the LiH PEC. The aforementioned PECs are then used to calculate the vibrational energies for these systems. The maximum difference between the computed and the experimental vibrational transitions is smaller than 0.9 cm(-1). The contribution of the adiabatic correction to the dissociation energy of (7)LiH molecule is 10.7 cm(-1). The magnitude of this correction shows its importance in calculating the LiH spectroscopic constants. As the estimated contribution of the nonadiabatic and relativistic effects to the ground state dissociation energy is around 0.3 cm(-1), their inclusion in the LiH PEC calculation seems to be the next most important contribution to evaluate in order to improve the accuracy achieved in this work.

摘要

我们呈现了非常精确的 LiH 分子基态势能曲线(PEC)的计算结果,这些计算是使用具有中心移动的全电子显式相关高斯函数完成的。PEC 是通过涉及所有高斯函数的同时优化生成的,采用了一种方法,该方法利用了能量相对于高斯非线性参数(即指数和移动坐标)的分析一阶导数。LiH 核间距离在 1.8 和 40 bohrs 之间变化。生成的 PEC 的绝对精度估计不超过 0.3 cm(-1)。还计算了四个 LiH 同位素(即 (7)LiH、(6)LiH、(7)LiD 和 (6)LiD)的绝热修正,并将其添加到 LiH PEC 中。然后,使用上述 PEC 计算这些系统的振动能。计算出的和实验振动跃迁之间的最大差异小于 0.9 cm(-1)。绝热修正对 (7)LiH 分子离解能的贡献为 10.7 cm(-1)。这个修正的大小表明它在计算 LiH 光谱常数中的重要性。由于非绝热和相对论效应对基态离解能的估计贡献约为 0.3 cm(-1),因此在计算 LiH PEC 时似乎需要考虑下一个最重要的贡献,以提高本工作的准确性。

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