Theoretical Chemistry Group, Institute of Physical and Theoretical Chemistry, Wrocław University of Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland.
J Chem Phys. 2012 Sep 7;137(9):094307. doi: 10.1063/1.4748144.
In this study we report on the electronic contributions to the linear and nonlinear static electronic electric dipole properties, namely the dipole moment (μ), the polarizability (α), and the first-hyperpolarizability (β), of spatially confined LiH molecule in its ground X (1)Σ(+) state. The finite-field technique is applied to estimate the corresponding energy and dipole moment derivatives with respect to external electric field. Various forms of confining potential, of either spherical or cylindrical symmetry, are included in the Hamiltonian in the form of one-electron operator. The computations are performed at several levels of approximation including the coupled-cluster methods as well as multi-configurational (full configuration interaction) and explicitly correlated Gaussian wavefunctions. The performance of Kohn-Sham density functional theory for the selected exchange-correlation functionals is also discussed. In general, the orbital compression effects lead to a substantial reduction in all the studied properties regardless of the symmetry of confining potential, however, the rate of this reduction varies depending on the type of applied potential. Only in the case of dipole moment under a cylindrical confinement a gradual increase of its magnitude is observed.
在这项研究中,我们报告了空间限制的 LiH 分子在其基态 X(1)Σ(+)态下的线性和非线性静态电子电偶极性质的电子贡献,即偶极矩(μ)、极化率(α)和第一超极化率(β)。我们应用有限场技术来估计相应的能量和偶极矩导数与外电场的关系。各种形式的具有球对称性或圆柱对称性的限制势被包含在哈密顿量中,形式为单电子算符。在几个近似水平上进行了计算,包括耦合簇方法以及多组态(完全组态相互作用)和显式相关的高斯波函数。还讨论了所选交换相关泛函的 Kohn-Sham 密度泛函理论的性能。一般来说,轨道压缩效应对所有研究的性质都有很大的降低,无论限制势的对称性如何,但这种降低的速度取决于所施加的势的类型。只有在圆柱约束下的偶极矩的情况下,才观察到其大小的逐渐增加。