Self-Assembled Plasmonic Nanoparticle Clusters

Naomi J. Halas, Federico Capasso, Jiming Bao, Peter Nordlander, Rizia Bardhan, Vinothan Manoharan, Jonathan A. Fan, Kui Bao, Gennady Shvets, Chihhui Wu
2010-05-27

SCID:  54.1/zftbng7g
The self-assembly of colloids is an alternative to top-down processing that enables the fabrication of nanostructures. We show that self-assembled clusters of metal-dielectric spheres are the basis for nanophotonic structures. By tailoring the number and position of spheres in close-packed clusters, plasmon modes exhibiting strong magnetic and Fano-like resonances emerge. The use of identical spheres simplifies cluster assembly and facilitates the fabrication of highly symmetric structures. Dielectric spacers are used to tailor the interparticle spacing in these clusters to be approximately 2 nanometers. These types of chemically synthesized nanoparticle clusters can be generalized to other two- and three-dimensional structures and can serve as building blocks for new metamaterials.
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2010-05-27
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Naomi J. Halas
Federico Capasso
Jiming Bao
Peter Nordlander
Rizia Bardhan
Vinothan Manoharan
Jonathan A. Fan
Kui Bao
Gennady Shvets
Chihhui Wu
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