Journal
NANO LETTERS
Volume 10, Issue 8, Pages 3129-3134Publisher
AMER CHEMICAL SOC
DOI: 10.1021/nl101876f
Keywords
Surface plasmons; quantum optics; energy transfer; superradiance
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Funding
- Spanish Ministry of Science [MAT2009-06609-C02, CSD2007-046-NanoLight]
- Spanish Ministry of Education [FPU AP2007-00891]
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We show how both the subwavelength confinement associated with surface plasmons and the one-dimensional character of plasmonic waveguides can be exploited to enhance the coupling between quantum emitters. Resonance energy transfer and the phenomenon of superradiance are investigated in three different waveguiding schemes (wires, wedges, and channels) by means of the Finite Element Method. We also develop a simplified model that is able to capture the main features of the numerical results.
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