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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 110, 2012 - Issue 19-20: Special Issue in Honour of Peter R. Taylor
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Invited Articles

The binatural orbitals of electronic transitions

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Pages 2455-2464 | Received 04 Apr 2012, Accepted 18 May 2012, Published online: 22 Jun 2012
 

Abstract

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.

Acknowledgements

PÅM thanks the Swedish National Science Foundation for financial support via the Linnaeus grant for the Organizing Molecular Matter centre of excellence project (239-2009-6794), and through individual grant (2010-5008).

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