Spin-flip methods in quantum chemistry

This Perspective discusses salient features of the spin-flip approach to strong correlation and describes different methods that sprung from this idea. The spin-flip treatment exploits the different physics of low-spin and high-spin states and is based on the observation that correlation is small fo...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2020-02, Vol.22 (8), p.4326-4342
Hauptverfasser: Casanova, David, Krylov, Anna I
Format: Artikel
Sprache:eng
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Zusammenfassung:This Perspective discusses salient features of the spin-flip approach to strong correlation and describes different methods that sprung from this idea. The spin-flip treatment exploits the different physics of low-spin and high-spin states and is based on the observation that correlation is small for same-spin electrons. By using a well-behaved high-spin state as a reference, one can access problematic low-spin states by deploying the same formal tools as in the excited-state treatments ( i.e. , linear response, propagator, or equation-of-motion theories). The Perspective reviews applications of this strategy within wave function and density functional theory frameworks as well as the extensions for molecular properties and spectroscopy. The utility of spin-flip methods is illustrated by examples. Limitations and proposed future directions are also discussed. This perspective discusses, theory, applications, and recent developments of spin-flip methods in quantum chemistry.
ISSN:1463-9076
1463-9084
DOI:10.1039/c9cp06507e