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- W2328686166 abstract "Electronic structure calculations of the excited states of the benzene dimer using equation-of-motion coupled-cluster method are reported. The calculations reveal large density of electronic states, including multiple valence, Rydberg, and mixed Rydberg-valence states. The calculations of the oscillator strengths for the transitions between the excimer state (i.e., the lowest excited state of the dimer, 11B1g) and other excited states allowed us to identify the target state responsible for the excimer absorption as the E1u state of a mixed Rydberg-valence character at 3.04 eV above the excimer (11B1g). Although at D6h the 11B1g → E1u transition is symmetry-forbidden, small geometric displacements (to D2h) that have a negligible effect on the excitation energy split this degenerate state into the dark (4B3u) and bright (4B2u) components (oscillator strength of 0.3 au). The excitation energy for this transition depends strongly on the dimer structure, which explains the broad character of the experimentally observed excimer absorption spectrum." @default.
- W2328686166 created "2016-06-24" @default.
- W2328686166 creator A5007355325 @default.
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- W2328686166 date "2011-12-09" @default.
- W2328686166 modified "2023-09-25" @default.
- W2328686166 title "Electronic States of the Benzene Dimer: A Simple Case of Complexity" @default.
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- W2328686166 doi "https://doi.org/10.1021/jp209190e" @default.
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