State-specific density functionals for excited states from ensembles

Fuente: arXiv
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Main Authors: Gould, Tim, Dale, Stephen G, Kronik, Leeor, Pittalis, Stefano
Format: Preprint
Published: 2024
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author Gould, Tim
Dale, Stephen G
Kronik, Leeor
Pittalis, Stefano
author_facet Gould, Tim
Dale, Stephen G
Kronik, Leeor
Pittalis, Stefano
contents We present a first principles strategy for developing state-specific density functional approximations for excited states. We first clarify why approaches based on conventional ground state approximations miss density-driven correlations, by considering excited state physics through the lens of ensemble density functional theory. To solve this issue we gain insights on density driven correlations by exploiting the recently understood low-density limit of electrons in excited states. The theory developments are then combined to produce a proof-of-concept excited state approximation that resolves urgent paradigmatic failures (double excitations, charge transfer excitations, piecewise linearity) of existing state-of-art density-functional approaches, directly from differences of self-consistent field calculations; i.e., $Δ$SCF. In light of its observed impressive performance, we conclude that the approach represents a major step toward unified and accurate modelling of neutral and charged excitations.
format Preprint
id arxiv_https___arxiv_org_abs_2406_18105
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle State-specific density functionals for excited states from ensembles
Gould, Tim
Dale, Stephen G
Kronik, Leeor
Pittalis, Stefano
Chemical Physics
We present a first principles strategy for developing state-specific density functional approximations for excited states. We first clarify why approaches based on conventional ground state approximations miss density-driven correlations, by considering excited state physics through the lens of ensemble density functional theory. To solve this issue we gain insights on density driven correlations by exploiting the recently understood low-density limit of electrons in excited states. The theory developments are then combined to produce a proof-of-concept excited state approximation that resolves urgent paradigmatic failures (double excitations, charge transfer excitations, piecewise linearity) of existing state-of-art density-functional approaches, directly from differences of self-consistent field calculations; i.e., $Δ$SCF. In light of its observed impressive performance, we conclude that the approach represents a major step toward unified and accurate modelling of neutral and charged excitations.
title State-specific density functionals for excited states from ensembles
topic Chemical Physics
url https://arxiv.org/abs/2406.18105