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Interference, coupling, and nonlinear control of high-order modes in single asymmetric nanoantennas

Abstract: We investigate theoretically and experimentally the structure of plasmonic modes in individual asymmetric dimer antennas. Plasmonic near-field coupling of high-order modes results in hybridization of bright and dark modes of the individual nanorods, leading to an anticrossing of the coupled resonances. For two bright modes, hybridization results in a capacitive red shift and super-radiant broadening. We show that the properties of asymmetric dimers can be used for nonlinear control of spectral modes and demonstrate such a nonlinear effect by measuring the modulation of a hybrid asymmetric dimer?ITO antenna. With use of full electrodynamical calculations, we find that the properties of the near-field nonlinear responses are distinctly different from the far-field, which opens up new routes for nonlinear control of plasmonic nanosystems.

 Fuente: ACS nano, 2012, 6(7), 6462-6470

Editorial: American Chemical Society

 Año de publicación: 2012

Nº de páginas: 9

Tipo de publicación: Artículo de Revista

 DOI: 10.1021/nn3021579

ISSN: 1936-0851,1936-086X

Url de la publicación: https://doi.org/10.1021/nn3021579

Autoría

ABB, MARTINA

WANG, YUDONG

GROOT, C. H. DE

AIZPURUA, JAVIER

MUSKENS, OTTO L.