4.7 Article

Targeting excited states in all-trans polyenes with electron-pair states

Journal

JOURNAL OF CHEMICAL PHYSICS
Volume 145, Issue 23, Pages -

Publisher

AIP Publishing
DOI: 10.1063/1.4972053

Keywords

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Funding

  1. SONATA BIS grant of the National Science Centre, Poland [2015/18/E/ST4/00584]
  2. Marie-Sklodowska-Curie Individual Fellowship [702635-PCCDX]
  3. Foundation for Polish Science for a START stipend
  4. Wroclaw Centre for Networking and Supercomputing [412]

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Wavefunctions restricted to electron pair states are promising models for strongly correlated systems. Specifically, the pair Coupled Cluster Doubles (pCCD) ansatz allows us to accurately describe bond dissociation processes and heavy-element containing compounds with multiple quasi-degenerate single-particle states. Here, we extend the pCCD method to model excited states using the equation of motion (EOM) formalism. As the cluster operator of pCCD is restricted to electron-pair excitations, EOM-pCCD allows us to target excited electron-pair states only. To model singly excited states within EOM-pCCD, we modify the configuration interaction ansatz of EOM-pCCD to contain also single excitations. Our proposed model represents a simple and cost-effective alternative to conventional EOM-CC methods to study singly excited electronic states. The performance of the excited state models is assessed against the lowest-lying excited states of the uranyl cation and the two lowestlying excited states of all-trans polyenes. Our numerical results suggest that EOM-pCCD including single excitations is a good starting point to target singly excited states. Published by AIP Publishing.

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