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May 7, 2024Journal of Chemical Theory and Computation4 citationsOpen Access

Sparse-Stochastic Fragmented Exchange for Large-Scale Hybrid Time-Dependent Density Functional Theory Calculations

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MSMykola SeredaTATucker AllenNBNadine C. Bradbury

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Abstract

We extend our recently developed sparse-stochastic fragmented exchange formalism for ground-state near-gap hybrid DFT to calculate absorption spectra within linear-response time-dependent generalized Kohn–Sham DFT (LR-GKS-TDDFT) for systems consisting of thousands of valence electrons within a grid-based/plane-wave representation. A mixed deterministic/fragmented-stochastic compression of the exchange kernel, here using long-range explicit exchange functionals, provides an efficient method for accurate optical spectra. Both real-time propagation as well as frequency-resolved Casida-equation-type approaches for spectra are presented, and the method is applied to large molecular dyes.

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Cite This Study

Sereda et al. (2024) studied this question.

synapsesocial.com/papers/68e6b291b6db643587633ec6https://doi.org/10.1021/acs.jctc.4c00260
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