Deorbitalization strategies for meta-generalized-gradient-approximation exchange-correlation functionals
暂无分享,去创建一个
We explore the simplification of widely used meta-generalized-gradient approximation (mGGA) exchange-correlation functionals to the Laplacian level of refinement by use of approximate kinetic energy density functionals (KEDFs). Such deorbitalization is motivated by the prospect of reducing computational cost while recovering a strictly Kohn-Sham local potential framework (rather than the usual generalized Kohn-Sham treatment of mGGAs). A KEDF that has been rather successful in solid simulations proves to be inadequate for deorbitalization but we produce other forms which, with parametrization to Kohn-Sham results (not experimental data) on a small training set, yield rather good results on standard molecular test sets when used to deorbitalize the meta-GGA made very simple, TPSS, and SCAN functionals. We also study the difference between high-fidelity and best-performing deorbitalizations and discuss possible implications for use in ab initio molecular dynamics simulations of complicated condensed phase systems.
[1] Mikael Olsson. Struct , 2019, C# 8 Quick Syntax Reference.
[2] E. Brändas,et al. Fundamental world of quantum chemistry : a tribute to the memory of Per-Olov Löwdin , 2003 .
[3] Johannes Grotendorst,et al. Modern methods and algorithms of quantum chemistry , 2000 .