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Asymptotic behavior of the exchange-correlation energy density and the Kohn-Sham potential in density functional theory: exact results and strategy for approximations

ORAL

Abstract

Density functional theory (DFT) is nowadays the leading theoretical framework for quantum description of materials from first principles. The predictive power of DFT critically depends on an accurate approximation to the generally unknown exchange-correlation (xc) energy functional. Approximations to the xc functional can be constructed from first principles by satisfying known properties of the exact functional. In this talk I focus on two such exact properties: the asymptotic behavior of the xc energy density per particle, exc[n](r), and the asymptotic behavior of the Kohn-Sham potential, vxc[n](r), in finite many-electron systems. It is shown that these two properties are independent: fulfillment of one does not guarantee the other. In this process, a new quantity, the xc hole response function, is defined, some of its properties are deduced and its exact exchange part is analytically derived. A strategy for development of advanced approximations for exchange and correlation with a correct asymptotic behavior is suggested [1].

[1] E. Kraisler, Isr. J. Chem., accepted. https://doi.org/10.26434/chemrxiv.9917189.v1

Presenters

  • Eli Kraisler

    Hebrew Univ of Jerusalem

Authors

  • Eli Kraisler

    Hebrew Univ of Jerusalem