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research article

Graphene-Based Plasmonic Tunable Low-Pass Filters in the Terahertz Band

Correas-Serrano, Diego
•
Gomez-Diaz, Juan Sebastian
•
Perruisseau-Carrier, Julien  
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2014
Ieee Transactions On Nanotechnology

We propose the concept, synthesis, analysis, and design of graphene-based plasmonic tunable low-pass filters operating in the terahertz band. The proposed structure is composed of a graphene strip transferred onto a dielectric and a set of polysilicon dc gating pads located beneath it. This structure implements a stepped impedance low-pass filter for the propagating surface plasmons by adequately controlling the guiding properties of each strip section through graphene's field effect. A synthesis procedure is presented to design filters with desired specifications in terms of cutoff frequency, in-band performance, and rejection characteristics. The electromagnetic modeling of the structure is efficiently performed by combining an electrostatic scaling law to compute the guiding features of each strip section with a transmission line and transfer-matrix framework, approach further validated via full-wave simulations. The performance of the proposed filters is evaluated in practical scenarios, taking into account the presence of the gating bias and the influence of graphene's losses. These results, together with the high miniaturization associated with plasmonic propagation, are very promising for the future use and integration of the proposed filters with other graphene and silicon-based elements in innovative terahertz communication systems.

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Type
research article
DOI
10.1109/Tnano.2014.2344973
Web of Science ID

WOS:000345087900018

Author(s)
Correas-Serrano, Diego
Gomez-Diaz, Juan Sebastian
Perruisseau-Carrier, Julien  
Alvarez-Melcon, Alejandro
Date Issued

2014

Publisher

Ieee-Inst Electrical Electronics Engineers Inc

Published in
Ieee Transactions On Nanotechnology
Volume

13

Issue

6

Start page

1145

End page

1153

Subjects

Graphene

•

plasmons

•

reconfigurable filters

•

terahertz

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

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Available on Infoscience
December 30, 2014
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/109726
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