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  • 1
    Electronic Resource
    Electronic Resource
    Springer
    JETP letters 66 (1997), S. 748-751 
    ISSN: 1090-6487
    Keywords: 71.35.Aa ; 78.20.Bh ; 78.66.Qn
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract We predict an efficient electronic energy transfer from the two-dimensional Wannier-Mott excitons confined in a semiconductor quantum well to the optically active organic molecules of the nearby medium (substrate and/or overlayer). The energy transfer mechanism is of the Förster type and, at semiconductor-organic distances of several nanometers, can easily be as fast as 100 ps, which is about an order of magnitude shorter than the average exciton lifetime in an isolated quantum well. Under such conditions, the Wannier-Mott exciton luminescence is quenched and the organic luminescence is efficiently turned on. Our calculations, combining a microscopic quantum mechanical exciton model with a macroscopic electrodynamic description of the organic medium, take into account the dielectric constant discontinuities and can be applied to any organic-inorganic multilayer structure.
    Type of Medium: Electronic Resource
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