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January 1, 1999International Journal of Quantum Chemistry210 citations

Time-dependent local-density approximation in real time: Application to conjugated molecules

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KYKazuhiro YabanaGBG. F. Bertsch

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Abstract

The time-dependent local-density approximation (TDLDA) is applied to the optical response of conjugated carbon molecules in the energy range of 0–30 eV, with calculations given for carbon chains, polyenes, retinal, benzene, and C60. The major feature of the spectra, the collective π–π* transition, is seen at energies ranging from below 2 to 7 eV and is reproduced by the theory to a few tenths of an electron volt with a good account of systematic trends. However, there is some indication that TDLDA predicts too much fragmentation of the strength function in large molecules. Transition strengths are reproduced with a typical accuracy of 20%. The theory also predicts a broad absorption peak in the range of 15–25 eV, and this feature agrees with experiment in the one case where quantitative data is available (benzene). ©1999 John Wiley & Sons, Inc. Int J Quant Chem 75: 55–66, 1999

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Yabana et al. (1999) studied this question.

synapsesocial.com/papers/6a5b76fbfe4964b367567c89https://doi.org/10.1002/(sici)1097-461x(1999)75:1<55::aid-qua6>3.0.co;2-k
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