Propagation characteristics of hybrid modes supported by metal-low-high index waveguides and bends

Hybrid-mode waveguides consisting of a metal surface separated from a high index medium by a low index spacer have attracted much interest recently. Power is concentrated in the low index spacer region for this waveguide. Here we investigate the properties of the hybrid mode in detail and numericall...

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Published inOptics express Vol. 18; no. 12; pp. 12971 - 12979
Main Authors Alam, M Z, Meier, J, Aitchison, J S, Mojahedi, M
Format Journal Article
LanguageEnglish
Published United States 07.06.2010
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Abstract Hybrid-mode waveguides consisting of a metal surface separated from a high index medium by a low index spacer have attracted much interest recently. Power is concentrated in the low index spacer region for this waveguide. Here we investigate the properties of the hybrid mode in detail and numerically demonstrate the possibility of realizing compact waveguide bends using this wave guiding scheme.
AbstractList Hybrid-mode waveguides consisting of a metal surface separated from a high index medium by a low index spacer have attracted much interest recently. Power is concentrated in the low index spacer region for this waveguide. Here we investigate the properties of the hybrid mode in detail and numerically demonstrate the possibility of realizing compact waveguide bends using this wave guiding scheme.
Author Meier, J
Mojahedi, M
Alam, M Z
Aitchison, J S
Author_xml – sequence: 1
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  surname: Alam
  fullname: Alam, M Z
  email: malam@waves.utoronto.ca
  organization: Department of electrical and computer engineering, University of Toronto, Toronto, Ontario M5S 3G4, Canada. malam@waves.utoronto.ca
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  surname: Meier
  fullname: Meier, J
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  givenname: M
  surname: Mojahedi
  fullname: Mojahedi, M
BackLink https://www.ncbi.nlm.nih.gov/pubmed/20588426$$D View this record in MEDLINE/PubMed
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Snippet Hybrid-mode waveguides consisting of a metal surface separated from a high index medium by a low index spacer have attracted much interest recently. Power is...
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