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research article

Dual-band plasmonic resonator based on Jerusalem cross-shaped nanoapertures

Cetin, Arif E.
•
Kaya, Sabri
•
Mertiri, Alket
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2015
Photonics And Nanostructures-Fundamentals And Applications

In this paper, we both experimentally and numerically introduce a dual-resonant metamaterial based on subwavelength Jerusalem cross-shaped apertures. We numerically investigate the physical origin of the dual-resonant behavior, originating from the constituting aperture elements, through finite difference time domain calculations. Our numerical calculations show that at the dual-resonances, the aperture system supports large and easily accessible local electromagnetic fields. In order to experimentally realize the aperture system, we utilize a high-precision and lift-off free fabrication method based on electron-beam lithography. We also introduce a fine-tuning mechanism for controlling the dual-resonant spectral response through geometrical device parameters. Finally, we show the aperture system's highly advantageous far- and near-field characteristics through numerical calculations on refractive index sensitivity. The quantitative analyses on the availability of the local fields supported by the aperture system are employed to explain the grounds behind the sensitivity of each spectral feature within the dual-resonant behavior. Possessing dual-resonances with large and accessible electromagnetic fields, Jerusalem cross-shaped apertures can be highly advantageous for wide range of applications demanding multiple spectral features with strong nearfield characteristics. (C) 2015 Elsevier B.V. All rights reserved.

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Type
research article
DOI
10.1016/j.photonics.2015.04.001
Web of Science ID

WOS:000358812700009

Author(s)
Cetin, Arif E.
Kaya, Sabri
Mertiri, Alket
Asian, Ekin
Erramilli, Shyamsunder
Altug, Hatice  
Turkmen, Mustafa
Date Issued

2015

Publisher

Elsevier

Published in
Photonics And Nanostructures-Fundamentals And Applications
Volume

15

Start page

73

End page

80

Subjects

Plasmonics

•

Nanofabrication

•

Metamaterials

•

Subwavelength optics

•

Multi-band resonator

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
BIOS  
Available on Infoscience
September 28, 2015
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/119293
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