Quantifying errors of electron-proton/muon correlation functionals through the Kohn-Sham inversion of a two-component model system

Nahid Sadat Riyahi, Mohammad Goli, and Shant Shahbazian
Phys. Rev. B 108, 245155 – Published 22 December 2023

Abstract

The multicomponent density functional theory is faced with the challenge of capturing various types of inter- and intraparticle exchange-correlation effects beyond those introduced by the conventional electronic exchange-correlation functionals. Herein, we focus on evaluating the electron-proton/muon correlation functionals appearing in molecular/condensed-phase systems where a proton/muon is treated as a quantum particle on equal footing with electrons, beyond the Born-Oppenheimer paradigm. Five recently developed local correlation functionals, i.e., the epc series and eµc-1, are selected and their performances are analyzed by employing a two-particle model that includes an electron and a positively charged particle (PCP) with a variable mass, interacting through Coulombic forces, within a double harmonic trap. Using the Kohn-Sham (KS) inversion procedure, the exact two-component KS characterization of the model is deduced and its properties are compared to those derived from the considered functionals. The analysis demonstrates that these local functionals achieve their original parameterization objectives to reproduce the one-PCP densities and the electron-PCP correlation energies, but all fall short of reproducing the underlying PCP correlation potentials correctly. Moreover, a comprehensive error analysis reveals that the density-driven errors have a non-negligible contribution to the success of the considered functionals. Overall, the study shows the strengths as well as shortcomings of the considered functionals hopefully paving the way for designing more robust functionals in the future.

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  • Received 5 October 2023
  • Revised 7 November 2023
  • Accepted 30 November 2023

DOI:https://doi.org/10.1103/PhysRevB.108.245155

©2023 American Physical Society

Physics Subject Headings (PhySH)

Condensed Matter, Materials & Applied PhysicsAtomic, Molecular & Optical

Authors & Affiliations

Nahid Sadat Riyahi1, Mohammad Goli2,*, and Shant Shahbazian3,4,†

  • 1Department of Physical and Computational Chemistry, Shahid Beheshti University, Evin, Tehran 19839-69411, Iran
  • 2School of Nano Science, Institute for Research in Fundamental Sciences (IPM), Tehran 19395-5531, Iran
  • 3Department of Physics, Shahid Beheshti University, Evin, Tehran 19839-69411, Iran
  • 4Department of Chemistry, Sharif University of Technology, Tehran 11155-9516, Iran

  • *m_goli@ipm.ir
  • sh_shahbazian@sbu.ac.ir, sh-shahbazian@sharif.edu

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Issue

Vol. 108, Iss. 24 — 15 December 2023

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