Publication | Closed Access
Guiding Light in Monolayers of Sparse and Random Plasmonic Meta-atoms
31
Citations
36
References
2011
Year
PhotonicsPlasmonicsElectromagnetic MetamaterialsEngineeringNano-opticsPhysicsSurface PlasmonsOptical PropertiesNanotechnologyMetal NanoparticlesApplied PhysicsRandom Plasmonic Meta-atomsLight–matter InteractionDynamic MetamaterialsRefractive IndexBiophysicsNanophotonics
Encouraged by the capacity of surface plasmons to confine and propagate electromagnetic fields, waveguiding concepts have been developed, including combinations of continuous metal films or ordered arrays of metal nanoparticles. So far, waveguiding in the latter systems has been based on near-field or diffractive coupling. Herein, we show that monolayers of sparse and disordered gold nanoparticles support a novel transverse-electric guided mode that, contrary to previous work, relies on the strong enhancement of the polarizability upon excitation of the nanoparticle LSPR, creating an effective refractive index sufficiently high to support light guidance over a large range of frequencies. Excitation of this guided mode offers interesting nanophotonics features and applications such as a tunable total absorption spectral band, attractive for light harvesting applications, or the generation of a large amplification of the sensitivity to changes of refractive index accompanied with striking enhancement of the limit of detection in real biosensing experiments.
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