2019
DOI: 10.1038/s41598-018-36627-2
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Macro-scale transport of the excitation energy along a metal nanotrack: exciton-plasmon energy transfer mechanism

Abstract: Presently we report (i) excited state (exciton) propagation in a metal nanotrack over macroscopic distances, along with (ii) energy transfer from the nanotrack to adsorbed dye molecules. We measured the rates of both of these processes. We concluded that the effective speed of exciton propagation along the nanotrack is about 8 × 107 cm/s, much lower than the surface plasmon propagation speed of 1.4 × 1010 cm/s. We report that the transmitted energy yield depends on the nanotrack length, with the energy emitted… Show more

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Cited by 4 publications
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