Waldrop Jonathan M, Patkowski Konrad
Department of Chemistry and Biochemistry, Auburn University, Auburn, Alabama 36849, USA.
J Chem Phys. 2021 Jan 14;154(2):024103. doi: 10.1063/5.0035050.
The exchange terms in symmetry-adapted perturbation theory (SAPT) are normally calculated within the so-called S or single exchange approximation, which approximates the all-electron antisymmetrizer by interchanges of at most one electron pair between the interacting molecules. This approximation is typically very accurate at the van der Waals minimum separation and at larger intermolecular distances but begins to deteriorate at short range. Nonapproximated expressions for the second-order SAPT exchange corrections have been derived some time ago by Schäffer and Jansen [Mol. Phys. 111, 2570 (2013)]. In this work, we extend Schäffer and Jansen's formalism to derive and implement a nonapproximated expression for the third-order exchange-induction correction. Numerical tests on several representative noncovalent databases show that the S approximation underestimates the exchange-induction contributions in both second and third orders. This underestimation is very similar in relative terms, but the larger absolute values of the third-order exchange-induction effects, and their near complete cancellation with the corresponding induction energies, make the third-order errors more severe. In the worst-case scenario of interactions involving ions, the breakdown of the S approximation can result in a qualitatively wrong, attractive character of SAPT total energies at short range {as first observed by Lao and Herbert [J. Phys. Chem. A 116, 3042 (2012)]}. As expected, the inclusion of the full third-order exchange-induction energy in place of its S-approximated counterpart restores the correct, repulsive short-range behavior of the SAPT potential energy curves computed through the third order.
对称适配微扰理论(SAPT)中的交换项通常在所谓的S或单交换近似下计算,该近似通过在相互作用分子之间最多交换一对电子来近似全电子反对称化算符。这种近似在范德华最小间距和较大的分子间距离时通常非常准确,但在短程范围内开始变差。Schäffer和Jansen [《分子物理学》111, 2570 (2013)] 早在一段时间前就推导出了二阶SAPT交换修正的非近似表达式。在这项工作中,我们扩展了Schäffer和Jansen的形式体系,以推导并实现三阶交换诱导修正的非近似表达式。对几个有代表性的非共价数据库进行的数值测试表明,S近似在二阶和三阶中都低估了交换诱导贡献。这种低估在相对项上非常相似,但三阶交换诱导效应的绝对值更大,并且它们与相应的诱导能几乎完全抵消,使得三阶误差更为严重。在涉及离子相互作用的最坏情况下,S近似的失效会导致在短程范围内SAPT总能具有定性错误的吸引特性 {如Lao和Herbert [《物理化学杂志A》116, 3042 (2012)] 首次观察到的那样}。正如预期的那样,用其完整的三阶交换诱导能代替其S近似对应项,恢复了通过三阶计算得到的SAPT势能曲线正确的排斥性短程行为。