A simple one-body approach to the calculation of the first electronic absorption band of water

2009 | journal article

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​A simple one-body approach to the calculation of the first electronic absorption band of water​
Mata, R. A. ; Stoll, H. & Cabral, B. J. C.​ (2009) 
Journal of Chemical Theory and Computation5(7) pp. 1829​-1837​.​ DOI: https://doi.org/10.1021/ct9001653 

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Authors
Mata, Ricardo A. ; Stoll, Hermann; Cabral, B. J. Costa
Abstract
A one-body decomposition approach for investigating the electronic absorption spectra of molecular systems was proposed and applied to water clusters (H2O)N including up to N = 80 water molecules. Two specific aspects of the present implementation are the inclusion of the coupling between excited states and a simplified representation for the N-body Coulombic effects. For smaller clusters, the results based on the one-body decomposition scheme are in good agreement with full EOM-CCSD calculations. Two different regimes can be identified in the electronic absorption profile of larger water clusters. The first low-energy regime is dominated by local excitonic states on the cluster surface, whereas the higher-energy excitations associated with the second one are of delocalized nature.
Issue Date
2009
Journal
Journal of Chemical Theory and Computation 
ISSN
1549-9618
eISSN
1549-9626
Language
English

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