Manipulating and squeezing the photon local density of states with plasmonic nanoparticle networks. Girard, C., Dujardin, E., Marty, R., Arbouet, A., des Francs, & Colas, G. Physical Review B, 81(15):153412, April, 2010. doi abstract bibtex In this Brief Report, we show that when interconnected networks of gold particles are deposited onto a clean planar surface, they strongly modify the photonic local density of states (LDOS) in the immediate proximity of the self-assembled nanoparticles. They represent unique architectures for the subwavelength patterning of initially flat photonic LDOS. Moreover, we show that their local spectral signatures are well suited for the generation of sites able to enhance molecular fluorescence intensity.
@article{ girard_manipulating_2010,
title = {Manipulating and squeezing the photon local density of states with plasmonic nanoparticle networks},
volume = {81},
issn = {1098-0121},
doi = {10.1103/PhysRevB.81.153412},
abstract = {In this Brief Report, we show that when interconnected networks of gold particles are deposited onto a clean planar surface, they strongly modify the photonic local density of states ({LDOS)} in the immediate proximity of the self-assembled nanoparticles. They represent unique architectures for the subwavelength patterning of initially flat photonic {LDOS.} Moreover, we show that their local spectral signatures are well suited for the generation of sites able to enhance molecular fluorescence intensity.},
language = {English},
number = {15},
journal = {Physical Review B},
author = {Girard, Christian and Dujardin, Erik and Marty, Renaud and Arbouet, Arnaud and des Francs, Gerard Colas},
month = {April},
year = {2010},
keywords = {corrals, gold nanoparticles, microscopy, nanorods, nanostructures, nanowires, optics, propagation, surface-plasmon, wave-guides},
pages = {153412}
}
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