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Terahertz dielectric resonator antenna coupled to graphene plasmonic dipole

Author
Hosseininejad, S.; Neshat, M.; Faraji-Dana, R.; Abadal, S.; Lemme, M.; Bolívar, P.; Alarcon, E.; Albert Cabellos-Aparicio
Type of activity
Presentation of work at congresses
Name of edition
12th European Conference on Antennas and Propagation
Date of publication
2018
Presentation's date
2018-04
Book of congress proceedings
12th European Conference on Antennas and Propagation (EuCAP 2018): 9-13 April 2018: London, UK
First page
1
Last page
5
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
DOI
https://doi.org/10.1049/cp.2018.1041 Open in new window
Project funding
VisorSurf - A Hardware Platform for Software-driven Functional Metasurfaces
Repository
http://hdl.handle.net/2117/128471 Open in new window
https://arxiv.org/abs/1801.03834 Open in new window
URL
https://ieeexplore.ieee.org/document/8568719 Open in new window
Abstract
This paper presents an efficient approach for exciting a dielectric resonator antenna (DRA) in the terahertz frequencies by means of a graphene plasmonic dipole. Design and analysis are performed in two steps. First, the propagation properties of hybrid plasmonic one-dimensional and two-dimensional structures are obtained by using transfer matrix theory and the finite-element method. The coupling amount between the plasmonic graphene mode and the dielectric wave mode is explored based on differe...
Citation
Hosseininejad, S. [et al.]. Terahertz dielectric resonator antenna coupled to graphene plasmonic dipole. A: European Conference on Antennas and Propagation. "12th European Conference on Antennas and Propagation (EuCAP 2018): 9-13 April 2018: London, UK". Institute of Electrical and Electronics Engineers (IEEE), 2018, p. 1-5.
Keywords
Antennas, Dielectric resonator antenna, Dielectric resonator antennas, Dielectric resonators, Graphene, Hybrid structure, Hybrid structures, Plasmonics, Plasmons, Propagation properties, Radiation efficiency, Tera Hertz, Terahertz, Terahertz frequencies, Terahertz waves, Transfer matrix method, Transfer-matrix theory, Two-dimensional structures
Group of research
CBA - Communications and Broadband Architectures Lab
EPIC - Energy Processing and Integrated Circuits
PERC-UPC - Power Electronics Research Centre

Participants

  • Hosseininejad, Seyed Ehsan  (author and speaker )
  • Neshat, Mohammad  (author and speaker )
  • Faraji-Dana, Reza  (author and speaker )
  • Abadal Cavalle, Sergi  (author and speaker )
  • Lemme, Max  (author and speaker )
  • Bolívar, Peter Haring  (author and speaker )
  • Alarcon Cot, Eduardo Jose  (author and speaker )
  • Cabellos Aparicio, Alberto  (author and speaker )