Bormotova E A, Kozlov S V, Pazyuk E A, Stolyarov A V, Majewska I, Moszynski R
Department of Chemistry, Lomonosov Moscow State University, Leninskie gory 1/3, 119991, Moscow, Russia.
Quantum Chemistry Laboratory, Department of Chemistry, University of Warsaw, Pasteura 1, 02-093 Warsaw, Poland.
Phys Chem Chem Phys. 2021 Mar 11;23(9):5187-5198. doi: 10.1039/d0cp06487d.
The non-adiabatic electronic matrix elements, LΠΣ(R), that arise from the spin-conserving electron-rotational interactions between all mΣ+ and mΠ states, where multiplicity m = 1, 3, converging to the lowest three dissociation limits of Li-containing alkali diatomics, LiM (M = Na, K, Rb), were calculated ab initio up to large internuclear distances, R. The required electronic wavefunctions were obtained within the framework of the multi-reference configuration interaction treatment of the two-valence-electron problem constructed using small-core scalar-relativistic effective core potentials and l-independent core-polarization potentials. A least squares analysis of the ab initio functions at large internuclear distances in conjunction with long-range perturbation theory (LRPT) revealed three different asymptotic behaviors of the LΠΣ(R → +∞)-functions: const. + β[n]/Rn, characterized by n = -1, 3 and 6. The asymptotic coefficients β[n], extracted from the point-wise ab initio data, were found to be in agreement with their LRPT counterparts, which were evaluated analytically using the relevant atomic parameters. The mass dependence of the LΠΣ matrix elements was investigated analytically and numerically. To confirm the reliability of the LΠΣ(R)-functions and interatomic potentials at small and intermediate distances, the empirical q-factors available for the D1Π-states of all LiM molecules studied were compared with their theoretical counterparts derived from the present ab initio data.
非绝热电子矩阵元(L_{ΠΣ}(R))源自所有(mΣ^+)和(mΠ)态之间的自旋守恒电子-转动相互作用,其中多重度(m = 1, 3),收敛到含锂碱金属双原子分子(LiM)((M = Na, K, Rb))的最低三个解离极限,通过从头计算得到了直至大核间距(R)的结果。所需的电子波函数是在使用小核标量相对论有效核势和与角动量无关的核极化势构建的双价电子问题的多参考组态相互作用处理框架内获得的。结合长程微扰理论(LRPT)对大核间距下的从头计算函数进行最小二乘分析,揭示了(L_{ΠΣ}(R → +∞))函数的三种不同渐近行为:常数(+\ β[n]/R^n),其特征为(n = -1, 3)和(6)。从逐点从头计算数据中提取的渐近系数(β[n]),被发现与通过使用相关原子参数进行解析评估的LRPT对应系数一致。对(L_{ΠΣ})矩阵元的质量依赖性进行了分析和数值研究。为了确认(L_{ΠΣ}(R))函数和小间距及中间间距下的原子间势的可靠性,将所研究的所有(LiM)分子(D^1Π)态可用的经验(q)因子与其从当前从头计算数据导出的理论对应值进行了比较。