Implementation of a Graphene-Based RGW Coupler for THz Applications

Author:

Kiani Narges1,Hamedani Farzad Tavakkol1,Rezaei Pejman1

Affiliation:

1. Semnan University

Abstract

Abstract Ridge gap waveguide is one of the new technologies in the field of waveguides. Their advantages include being planar, low cost of construction, shielding by metal without the need for problems related to packaging, the formation of a narrow gap enclosed between two metal plates, realization of the texture on one of the metal plates and lower losses. These structures have no mechanical connection. While electric currents must flow in them. In this article, two graphene-based ridge gap waveguide coupler structures are presented. The designed structures are used in the THz band. By using graphene in the THz frequency band, frequency reconfigurable can be achieved. S-parameters curves, phase difference diagrams and e-field distributions are reported for two graphene-based ridge gap waveguide couplers.

Publisher

Research Square Platform LLC

Reference73 articles.

1. Local metamaterial-based waveguides in gaps between parallel metal plates;Kildal PS;IEEE Antennas Wireless Propag Lett,2008

2. Design and experimental verification of ridge gap waveguide in bed of nails for parallel-plate mode suppression, IET Microw;Kildal PS;Antennas Propag,2011

3. Wide-band slot antenna arrays with single-layer corporate-feed network in ridge gap waveguide technology;Zaman AU;Ieee Transactions On Antennas And Propagation,2014

4. Wideband and high-gain corporate-fed gap waveguide slot array antenna with ETSI class II radiation pattern in V -band;Vosoogh A;Ieee Transactions On Antennas And Propagation,2017

5. 2×2-slot element for 60-GHz planar array antenna realized on two doubled-sided PCBs using SIW cavity and EBG-type soft surface fed by microstrip-ridge gap waveguide;Razavi SA;Ieee Transactions On Antennas And Propagation,2014

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