Hyperbolic and Plasmonic Properties of Silicon/Ag Aligned Nanowire Arrays

Abstract

The hyperbolic and plasmonic properties of silicon nanowire/Ag arrays have been investigated. The aligned nanowire arrays were formed and coated by atomic layer deposition of Ag, which itself is a metamaterial due to its unique mosaic film structure. The theoretical and numerical studies suggest that the fabricated arrays have hyperbolic dispersion in the visible and IR ranges of the spectrum. The theoretical predictions have been indirectly confirmed by polarized reflection spectra, showing reduction of the reflection in p polarization in comparison to that in s polarization. Studies of dye emission on top of Si/Ag nanowire arrays show strong emission quenching and shortening of dye emission kinetics. This behavior is also consistent with the predictions for hyperbolic media. The measured SERS signals were enhanced by almost an order of magnitude for closely packed and aligned nanowires, compared to random nanowire composites. These results agree with electric field simulations of these array structures.

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Document Details

Document Type
Technical Report
Publication Date
Jun 17, 2013
Accession Number
ADA595855

Entities

People

  • Brian Wells
  • Guo‐Niu Zhu
  • J. E. Livenere
  • J. K. Kitur
  • M. A. Noginov
  • Orest. J. Glembocki
  • Sharka M. Prokes
  • T. U. Tumkur
  • V. A. Podolskiy

Organizations

  • United States Naval Research Laboratory

Tags

DTIC Thesaurus Topics

  • Composite Materials
  • Diffraction
  • Electric Fields
  • Electromagnetic Fields
  • Electromagnetic Metamaterials
  • Materials
  • Materials Laboratories
  • Materials Processing
  • Materials Science
  • Metamaterials
  • Nanotechnology
  • Optical Properties
  • Optics
  • Photonic Metamaterials
  • Reflection
  • Spectra
  • Tunable Metamaterials

Fields of Study

  • Materials science
  • Physics

Readers

  • Chemistry (specifically Chemical Fluorescence)
  • Materials Science and Engineering.
  • Nanoscale Plasmonic Nanotechnology

Technology Areas

  • Microelectronics