Semiclassical Dispersion Corrections Efficiently Improve Multiconfigurational Theory with Short-Range Density-Functional Dynamic Correlation

被引:4
作者
Stein, Christopher J. [1 ]
Reiher, Markus [1 ]
机构
[1] Swiss Fed Inst Technol, Lab Phys Chem, CH-8093 Zurich, Switzerland
关键词
MATRIX RENORMALIZATION-GROUP; 2ND-ORDER PERTURBATION-THEORY; COUPLED-CLUSTER METHOD; MOLECULAR ELECTRONIC WAVEFUNCTIONS; BATH CONFIGURATION-INTERACTION; AB-INITIO CALCULATIONS; SPACE SCF METHOD; INTERACTION ENERGIES; BASIS-SETS; QUANTUM INFORMATION;
D O I
10.1021/acs.jpca.0c02130
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Multiconfigurational wave functions are known to describe the electronic structure across a Born-Oppenheimer surface qualitatively correct. However, for quantitative reaction energies, dynamic correlation originating from the many configurations involving excitations out of the restricted orbital space, the active space, must be considered. Standard procedures involve approximations that eventually limit the ultimate accuracy achievable (most prominently, multireference perturbation theory). At the same time, the computational cost increases dramatically due to the necessity to obtain higher-order reduced density matrices. It is this disproportion that leads us here to propose an MC-srDFT-D hybrid approach of semiclassical dispersion (D) corrections to cover long-range dynamic correlation in a multiconfigurational (MC) wave function theory, which includes short-range (sr) dynamic correlation by density functional theory (DFT) without double counting. We demonstrate that the reliability of this approach is very good (at negligible cost), especially when considering that standard second-order multireference perturbation theory usually overestimates dispersion interactions.
引用
收藏
页码:2834 / 2841
页数:8
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