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Left-handed metamaterial inspired by joint T-D geometry on flexible NiAl(2)O(4) substrate

In this paper, we introduce a new compact left-handed tunable metamaterial structure, inspired by a joint T-D shape geometry on a flexible NiAl(2)O(4) substrate. The designed metamaterial exhibits an extra-large negative refractive index bandwidth of 6.34 GHz, with an operating frequency range from...

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Autores principales: Ahamed, Eistiak, Hasan, Md. Mehedi, Faruque, Mohammad Rashed Iqbal, Mansor, Mohd Fais Bin, Abdullah, Sabirin, Islam, Mohammad Tariqul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6010254/
https://www.ncbi.nlm.nih.gov/pubmed/29924859
http://dx.doi.org/10.1371/journal.pone.0199150
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author Ahamed, Eistiak
Hasan, Md. Mehedi
Faruque, Mohammad Rashed Iqbal
Mansor, Mohd Fais Bin
Abdullah, Sabirin
Islam, Mohammad Tariqul
author_facet Ahamed, Eistiak
Hasan, Md. Mehedi
Faruque, Mohammad Rashed Iqbal
Mansor, Mohd Fais Bin
Abdullah, Sabirin
Islam, Mohammad Tariqul
author_sort Ahamed, Eistiak
collection PubMed
description In this paper, we introduce a new compact left-handed tunable metamaterial structure, inspired by a joint T-D shape geometry on a flexible NiAl(2)O(4) substrate. The designed metamaterial exhibits an extra-large negative refractive index bandwidth of 6.34 GHz, with an operating frequency range from 4 to 18 GHz. We demonstrate the effects of substrate material thickness on the effective properties of metamaterial using two substrate materials: 1) flame retardant 4 and 2) flexible nickel aluminate. A finite integration technique based on the Computer Simulation Technology Microwave Studio electromagnetic simulator was used for our design, simulation, and investigation. A finite element method based on an HFSS (High Frequency Structure Simulator) electromagnetic simulator is also used to simulate results, perform verifications, and compare the measured results. The simulated resonance peaks occurred at 6.42 GHz (C-band), 9.32 GHz (X-band), and 16.90 GHz (Ku-band), while the measured resonance peaks occurred at 6.60 GHz (C-band), 9.16 GHz (X-band) and 17.28 GHz (Ku-band). The metamaterial structure exhibited biaxial tunable properties by changing the electromagnetic wave propagation in the y and z directions and the left-handed characteristics at 11.35 GHz and 13.50 GHz.
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spelling pubmed-60102542018-07-06 Left-handed metamaterial inspired by joint T-D geometry on flexible NiAl(2)O(4) substrate Ahamed, Eistiak Hasan, Md. Mehedi Faruque, Mohammad Rashed Iqbal Mansor, Mohd Fais Bin Abdullah, Sabirin Islam, Mohammad Tariqul PLoS One Research Article In this paper, we introduce a new compact left-handed tunable metamaterial structure, inspired by a joint T-D shape geometry on a flexible NiAl(2)O(4) substrate. The designed metamaterial exhibits an extra-large negative refractive index bandwidth of 6.34 GHz, with an operating frequency range from 4 to 18 GHz. We demonstrate the effects of substrate material thickness on the effective properties of metamaterial using two substrate materials: 1) flame retardant 4 and 2) flexible nickel aluminate. A finite integration technique based on the Computer Simulation Technology Microwave Studio electromagnetic simulator was used for our design, simulation, and investigation. A finite element method based on an HFSS (High Frequency Structure Simulator) electromagnetic simulator is also used to simulate results, perform verifications, and compare the measured results. The simulated resonance peaks occurred at 6.42 GHz (C-band), 9.32 GHz (X-band), and 16.90 GHz (Ku-band), while the measured resonance peaks occurred at 6.60 GHz (C-band), 9.16 GHz (X-band) and 17.28 GHz (Ku-band). The metamaterial structure exhibited biaxial tunable properties by changing the electromagnetic wave propagation in the y and z directions and the left-handed characteristics at 11.35 GHz and 13.50 GHz. Public Library of Science 2018-06-20 /pmc/articles/PMC6010254/ /pubmed/29924859 http://dx.doi.org/10.1371/journal.pone.0199150 Text en © 2018 Ahamed et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Ahamed, Eistiak
Hasan, Md. Mehedi
Faruque, Mohammad Rashed Iqbal
Mansor, Mohd Fais Bin
Abdullah, Sabirin
Islam, Mohammad Tariqul
Left-handed metamaterial inspired by joint T-D geometry on flexible NiAl(2)O(4) substrate
title Left-handed metamaterial inspired by joint T-D geometry on flexible NiAl(2)O(4) substrate
title_full Left-handed metamaterial inspired by joint T-D geometry on flexible NiAl(2)O(4) substrate
title_fullStr Left-handed metamaterial inspired by joint T-D geometry on flexible NiAl(2)O(4) substrate
title_full_unstemmed Left-handed metamaterial inspired by joint T-D geometry on flexible NiAl(2)O(4) substrate
title_short Left-handed metamaterial inspired by joint T-D geometry on flexible NiAl(2)O(4) substrate
title_sort left-handed metamaterial inspired by joint t-d geometry on flexible nial(2)o(4) substrate
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6010254/
https://www.ncbi.nlm.nih.gov/pubmed/29924859
http://dx.doi.org/10.1371/journal.pone.0199150
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