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GRMELA, L. KALA, J. TOMÁNEK, P.
Original Title
Near-field local detection of energy transport in metal thin film plasmon waveguides
Type
conference paper
Language
English
Original Abstract
A study of the optical properties of metallic surface plasmon-polaritons deposited on waveguide structure, focusing on differences with dielectric counterparts for the creation of functional nanoscale optical devices such as waveguides and resonators is reported. The ability of plasmonic structures to confine light to volumes significantly smaller than the diffraction limit of light is discussed. The important challenge of efficient excitation of surface plasmon-polaritons in a micro-optic framework is addressed. The Goos-Hänchen shift resonantly enhanced by placing a metallic quantum well ultrathin film at the dielectric-vacuum (air) interface can significantly improve the performance of these devices.
Keywords
optical waveguides, enhanced total internal reflection, Goos-Hänchen effect, surface plasmons, nanophotonics, nanooptics, integrated optics
Authors
GRMELA, L.; KALA, J.; TOMÁNEK, P.
RIV year
2005
Released
20. 12. 2005
Publisher
Brno University of Technology, Faculty of Mechanical Engineering
Location
Brno
ISBN
80-214-3085-0
Book
NANO'05
Pages from
219
Pages to
224
Pages count
6
BibTex
@inproceedings{BUT16476, author="Lubomír {Grmela} and Jaroslav {Kala} and Pavel {Tománek}", title="Near-field local detection of energy transport in metal thin film plasmon waveguides", booktitle="NANO'05", year="2005", pages="219--224", publisher="Brno University of Technology, Faculty of Mechanical Engineering", address="Brno", isbn="80-214-3085-0" }