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Per-Åke Malmqvist

Senior lecturer

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The binatural orbitals of electronic transitions

Author

  • Per-Åke Malmqvist
  • Valera Veryazov

Summary, in English

The well-known natural orbitals are defined as eigenfunctions of a one-particle reduced density operator, and can be obtained from a computed density matrix by diagonalization. Similarly, in this article we define the binatural orbitals, which are obtained for a pair of wave functions by a singular value decomposition of a reduced transition density matrix. The pair of states would usually be eigenstates of the electronic Hamiltonian, and the binatural orbitals then serve as a useful tool for the analysis of the transition between these states. More generally, application to any two state functions gives important information as to how the two states differ. Some examples are shown.

Department/s

  • Computational Chemistry

Publishing year

2012

Language

English

Pages

2455-2464

Publication/Series

Molecular Physics

Volume

110

Issue

19-20

Document type

Article

Publisher

Taylor & Francis

Topic

  • Theoretical Chemistry (including Computational Chemistry)

Keywords

  • binatural orbitals
  • electron transitions
  • electron correlation
  • RASSI
  • MOLCAS

Status

Published

ISBN/ISSN/Other

  • ISSN: 1362-3028