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Coupled cluster valence bond theory for open-shell systems with application to very long range strong correlation in a polycarbene dimer.

Authors :
Small, David W
Small, David W
Head-Gordon, Martin
Small, David W
Small, David W
Head-Gordon, Martin
Source :
The Journal of chemical physics; vol 147, iss 2, 024107; 0021-9606
Publication Year :
2017

Abstract

The Coupled Cluster Valence Bond (CCVB) method, previously presented for closed-shell (CS) systems, is extended to open-shell (OS) systems. The theoretical development is based on embedding the basic OS CCVB wavefunction in a fictitious singlet super-system. This approach reveals that the OS CCVB amplitude equations are quite similar to those of CS CCVB, and thus that OS CCVB requires the same level of computational effort as CS CCVB, which is an inexpensive method. We present qualitatively correct CCVB potential energy curves for all low-lying spin states of P2 and Mn2+. CCVB is successfully applied to the low-lying spin states of some model linear polycarbenes, systems that appear to be a hindrance to standard density functionals. We examine an octa-carbene dimer in a side-by-side orientation, which, in the monomer dissociation limit, exhibits maximal strong correlation over the length of the polycarbene.

Details

Database :
OAIster
Journal :
The Journal of chemical physics; vol 147, iss 2, 024107; 0021-9606
Notes :
application/pdf, The Journal of chemical physics vol 147, iss 2, 024107 0021-9606
Publication Type :
Electronic Resource
Accession number :
edsoai.on1367476151
Document Type :
Electronic Resource