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  • Heat Dissipation of Metal N...
    Gillibert, Raymond; Colas, Florent; de La Chapelle, Marc Lamy; Gucciardi, Pietro G.

    Plasmonics (Norwell, Mass.), 08/2020, Letnik: 15, Številka: 4
    Journal Article

    The dipolar approximation model that describes the heat delivered by a nanoparticle under continuous light irradiation provides a relation in which the dissipated power is proportional to the extinction cross-section. This relation works fairly well for small particles in which all the energy is absorbed, but fails for larger structures due to the non-negligible power scattered in the free space that does not contribute to heat generation. Here we show that, if we consider the light-induced dipolar field in the calculation of the dissipated power, we recover the proportionality with the absorption cross-section of the nanoparticle.