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    Pseudopotentials for orbital-free DFT: Capturing nonlocality and correcting functional approximants

    Valeria Rios-Vargas1,*, Ezekiel Oyeniyi2, Xuecheng Shao3, Wala Fathelrahman Ibrahim Elsayed4, Sunday Joseph Ogenyi4, Alex Okello5,6, and Michele Pavanello1,7,†

    • *Contact author: valeria.rios@rutgers.edu
    • †Contact author: m.pavanello@rutgers.edu

    Phys. Rev. B 113, 125124 – Published 12 March, 2026

    DOI: https://doi.org/10.1103/b9fg-k8tm

    Abstract

    Developing reliable pseudopotentials for orbital-free density functional theory (OF-DFT), especially for transition metals, remains a significant challenge. In this study, we provide a theoretical framework for analyzing pseudization strategies for OF-DFT calculations. From the analysis arises a proposed pseudization method which involves constructing local pseudopotentials by targeting existing Kohn-Sham DFT pseudopotentials through an optimized effective potential procedure. We produce four distinct sets of local pseudopotentials and evaluate their accuracy and transferability on the set of transition metal elements. Our results indicate a substantial improvement over previously available pseudopotentials. Although current OF-DFT functionals still only reach a qualitative accuracy for transition metals, our newly developed pseudopotentials provide a rigorous framework for further methodological advancements.

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