Nasiri Saeed, Bubin Sergiy, Stanke Monika, Adamowicz Ludwik
Department of Physics, Nazarbayev University, Astana 010000, Kazakhstan.
Institute of Physics, Faculty of Physics, Astronomy, and Informatics, Nicolaus Copernicus University, ul. Grudziądzka 5, Toruń PL 87-100, Poland.
J Phys Chem A. 2024 Oct 24;128(42):9175-9183. doi: 10.1021/acs.jpca.4c04510. Epub 2024 Oct 12.
Low-lying rotationless states of the lithium hydride molecule are studied in the framework of the variational method without assuming the Born-Oppenheimer (BO) approximation. Highly accurate solutions to the six-particle (two nuclei and four electrons) Schrödinger equation are obtained by means of expanding the wave functions of the considered states in terms of many thousands of all-particle explicitly correlated Gausssians. The basis functions are optimized independently for each state using the analytic energy gradient with respect to the nonlinear parameters. The non-BO wave functions obtained in the calculations are used to evaluate the leading-order relativistic and quantum electrodynamics energy corrections in the framework of the perturbation theory. The geometric structure of the molecule in the ground and excited states is discussed based on the analysis of the nucleus-nucleus correlation functions. The non-BO energies and structural parameters obtained of this work are compared with the most accurate BO results currently available.
在不假设玻恩-奥本海默(BO)近似的变分法框架下,研究了氢化锂分子的低能无转动态。通过用数千个全粒子显式相关高斯函数展开所考虑态的波函数,得到了六粒子(两个原子核和四个电子)薛定谔方程的高精度解。使用关于非线性参数的解析能量梯度,针对每个态独立优化基函数。计算中得到的非BO波函数用于在微扰理论框架下评估领先阶相对论和量子电动力学能量修正。基于核对核相关函数的分析,讨论了分子基态和激发态的几何结构。将这项工作得到的非BO能量和结构参数与目前可得的最精确的BO结果进行了比较。