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Ab Initio Static Exchange–Correlation Kernel across Jacob’s Ladder without Functional Derivatives

Authors :
Moldabekov, Zhandos
Böhme, Maximilian
Vorberger, Jan
Blaschke, David
Dornheim, Tobias
Source :
Journal of Chemical Theory and Computation; February 2023, Vol. 19 Issue: 4 p1286-1299, 14p
Publication Year :
2023

Abstract

The electronic exchange─correlation (XC) kernel constitutes a fundamental input for the estimation of a gamut of properties such as the dielectric characteristics, the thermal and electrical conductivity, or the response to an external perturbation. In this work, we present a formally exact methodology for the computation of the system specific static XC kernel exclusively within the framework of density functional theory (DFT) and without employing functional derivatives─no external input apart from the usual XC-functional is required. We compare our new results with exact quantum Monte Carlo (QMC) data for the archetypical uniform electron gas model under both ambient and warm dense matter conditions. This gives us unprecedented insights into the performance of different XC functionals, and it has important implications for the development of new functionals that are designed for the application at extreme temperatures. In addition, we obtain new DFT results for the XC kernel of warm dense hydrogen as it occurs in fusion applications and astrophysical objects. The observed excellent agreement to the QMC reference data demonstrates that presented framework is capable to capture nontrivial effects such as XC-induced isotropy breaking in the density response of hydrogen at large wave numbers.

Details

Language :
English
ISSN :
15499618 and 15499626
Volume :
19
Issue :
4
Database :
Supplemental Index
Journal :
Journal of Chemical Theory and Computation
Publication Type :
Periodical
Accession number :
ejs62151063
Full Text :
https://doi.org/10.1021/acs.jctc.2c01180