Developer Design of Hybrid Plasmonic Nano Patch Antenna with Metal Insulator Metal Multilayer Construction

Author:

Shaaban Raed M.1ORCID,Mudhafer A.2ORCID,Malallah Ra’ed1ORCID

Affiliation:

1. Physics Department, Faculty of Science, University of Basrah, Garmat Ali, Basrah, Iraq

2. Chemical and Petrochemical Technical Engineering Department, Southern Technical University, Basrah, Iraq

Abstract

Hybrid plasmonic nanopatch antenna with metal-insulator-metal (HMIM) multilayer has been investigated for operation at the frequency of 125–250 THz using the finite element method (FEM) implemented in Ansoft High Frequency Structure Simulator (HFSS). The proposed antenna exhibits a wide bandwidth of 49.5 THz (151.5 THz–201 THz) for the slots thicknesses Wg = 50 nm and Ws = 100 nm and dual bandwidth for Ws = 20 nm. The obtained results show the input impedance of 50.3 Ω input resistance (real part) and 2.3 Ω reactance (imaginary part) occurring at (near) the operation frequency. The maximum gain of 23.98 dB has been observed for resonant frequencies of 176 THz, and the maximum directivity remains above 6.73 dB and 7.46 dB at resonant frequencies of 170 THz and 190 THz, respectively. Our proposed antenna performance is compared to previously reported designs. The copolar and cross-polar radiation patterns are simulated at different resonant frequencies of 160 THz and 197 THz for planes Φ=90° and Φ=0°. The arrays of a proposed antenna are designed in one and two dimensions in order to appropriate high-gain applications.

Publisher

Hindawi Limited

Subject

Computer Networks and Communications,Information Systems

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Hybrid plasmonic rhombic nano-antenna with a dielectric director;Optical Materials Express;2023-05-26

2. Novel hybrid plasmonic nano-patch antenna for optical frequencies applications;3RD INTERNATIONAL SCIENTIFIC CONFERENCE OF ALKAFEEL UNIVERSITY (ISCKU 2021);2022

3. Multilayered L-shaped nanoantenna arrays with an increased electric field enhancement;Journal of the Optical Society of America B;2021-04-19

4. Design and Analysis of Compact Pentagonal Hybrid Plasmonic Nano-Antenna;2020 IEEE International Women in Engineering (WIE) Conference on Electrical and Computer Engineering (WIECON-ECE);2020-12-26

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