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Broad electrical tuning of plasmonic nanoantennas at visible frequencies

Publication ,  Journal Article
Hoang, TB; Mikkelsen, MH
Published in: Applied Physics Letters
May 2, 2016

We report an experimental demonstration of electrical tuning of plasmon resonances of optical nanopatch antennas over a wide wavelength range. The antennas consist of silver nanocubes separated from a gold film by a thin 8 nm polyelectrolyte spacer layer. By using ionic liquid and indium tin oxide coated glass as a top electrode, we demonstrate dynamic and reversible tuning of the plasmon resonance over 100 nm in the visible wavelength range using low applied voltages between -3.0 V and 2.8 V. The electrical potential is applied across the nanoscale gap causing changes in the gap thickness and dielectric environment which, in turn, modifies the plasmon resonance. The observed tuning range is greater than the full-width-at-half-maximum of the plasmon resonance, resulting in a tuning figure of merit of 1.05 and a tuning contrast greater than 50%. Our results provide an avenue to create active and reconfigurable integrated nanophotonic components for applications in optoelectronics and sensing.

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Published In

Applied Physics Letters

DOI

ISSN

0003-6951

Publication Date

May 2, 2016

Volume

108

Issue

18

Related Subject Headings

  • Applied Physics
  • 51 Physical sciences
  • 40 Engineering
  • 10 Technology
  • 09 Engineering
  • 02 Physical Sciences
 

Citation

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Hoang, T. B., & Mikkelsen, M. H. (2016). Broad electrical tuning of plasmonic nanoantennas at visible frequencies. Applied Physics Letters, 108(18). https://doi.org/10.1063/1.4948588
Hoang, T. B., and M. H. Mikkelsen. “Broad electrical tuning of plasmonic nanoantennas at visible frequencies.” Applied Physics Letters 108, no. 18 (May 2, 2016). https://doi.org/10.1063/1.4948588.
Hoang TB, Mikkelsen MH. Broad electrical tuning of plasmonic nanoantennas at visible frequencies. Applied Physics Letters. 2016 May 2;108(18).
Hoang, T. B., and M. H. Mikkelsen. “Broad electrical tuning of plasmonic nanoantennas at visible frequencies.” Applied Physics Letters, vol. 108, no. 18, May 2016. Scopus, doi:10.1063/1.4948588.
Hoang TB, Mikkelsen MH. Broad electrical tuning of plasmonic nanoantennas at visible frequencies. Applied Physics Letters. 2016 May 2;108(18).

Published In

Applied Physics Letters

DOI

ISSN

0003-6951

Publication Date

May 2, 2016

Volume

108

Issue

18

Related Subject Headings

  • Applied Physics
  • 51 Physical sciences
  • 40 Engineering
  • 10 Technology
  • 09 Engineering
  • 02 Physical Sciences