المساق
arXiv 2016-09-12 DOI 10.1088/1361-6528/aa5b67 0 مشاهدة

Ag colloids and arrays for plasmonic non-radiative energy transfer from quantum dots to a quantum well

Murphy, Graham P. · Gough, John J. · Higgins, Luke J. · Karanikolas, Vasilios D. · Wilson, Keith M. · Coindreau, Jorge A. Garcia · Zubialevich, Vitaly Z. · Parbrook, Peter J. · Bradley, A. Louise

الأصل · EN

Ag nanoparticles in the form of colloids and ordered arrays are used to demonstrate plasmon-mediated non-radiative energy transfer from quantum dots to quantum wells with varying top barrier thicknesses. Plasmon-mediated energy transfer efficiencies of up to 25% are observed with the Ag colloids. The distance dependence of the plasmon-mediated energy transfer is found to follow the same d⁻⁴ dependence as the direct quantum dot to quantum well energy transfer. There is also evidence for an increase in the characteristic distance of the interaction, thus indicating that it follows a Förster-like model with the Ag nanoparticle-quantum dot acting as an enhanced donor dipole. Ordered Ag nanoparticle arrays display plasmon-mediated energy transfer efficiencies up to 21%. To explore the tunability of the array system, two arrays with different geometries are presented. It is demonstrated that changing the geometry of the array allows a transition from overall quenching of the acceptor quantum well emission to enhancement, as well as control of the competition between the quantum dot donor quenching and energy transfer rates.

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