TD$\Delta$SCF: Time-Dependent Density Functional Theory with a Non-Aufbau Reference for near-degenerate states
Shuto Shibasaki, Fumiya Mohri, Takashi Tsuchimochi

TL;DR
TDΔSCF is a new linear-response method combining non-Aufbau ΔSCF references with TDDFT to better handle near-degenerate states, showing improved results over SF-TDDFT in various challenging cases.
Contribution
It introduces TDΔSCF, a novel approach that preserves Coulomb and exchange-correlation responses while addressing near-degeneracy more effectively.
Findings
TDΔSCF yields smoother torsional potentials and better singlet-triplet gaps.
It provides a more balanced description of challenging singlet states.
The method shows weaker functional dependence than SF-TDDFT.
Abstract
Near-degenerate electronic structures remain a major challenge for conventional single-reference density functional theory (DFT). To address this problem, we propose time-dependent SCF (TDSCF), a novel linear-response scheme in which a non-Aufbau SCF determinant serves as the reference for a subsequent TDDFT calculation. In contrast to collinear spin-flip (SF)-TDDFT, this formulation preserves the usual Coulomb and exchange-correlation response contributions while describing the target states from an electronically excited reference. We examine the performance of TDSCF for several prototypical problems involving near-degeneracy, including the torsional potential of ethylene, singlet--triplet gaps of representative diradicals, geometry optimizations of benzyne isomers, and bond-dissociation curves of hydrogen fluoride and F. Across these tests,…
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