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AuthorRahman, Md Atiqur
AuthorIslam, Mohammad Tariqul
AuthorSingh, Mandeep Singh Jit
AuthorChowdhury, Muhammad EH.
AuthorSamsuzzaman, Md
Available date2023-04-17T06:57:45Z
Publication Date2021
Publication NameChinese Journal of Physics
ResourceScopus
URIhttp://dx.doi.org/10.1016/j.cjph.2021.02.014
URIhttp://hdl.handle.net/10576/41980
AbstractThis article presents vertically coupled, rectangular complementary split-ring resonator-shaped quad-band double-negative (DNG) metamaterial unit cells, that is, having both negative permittivity and permeability, which redirect negative refractive and also are not found in nature. The metamaterial is fabricated on magnesium zinc ferrite-based flexible microwave substrates, and the flexible substrates are chosen with two different concentrations of magnesium (Mg) denoted by Mg30 and Mg50 for 30% and 50% of Mg, which possess dielectric constants of 4.32 and 3.15 and loss tangents of 0.003 and 0.005, respectively. The proposed metamaterials are demonstrated by utilizing the CST microwave simulator, and their effective parameters are extracted according to the Nicolson-Ross-Wire method. With Mg30, the prepared, flexible metamaterial shows measured resonances at 3.70 GHz, 7 GHz, 8.60 GHz, and 9.78 GHz, whereas with Mg50 it shows the measured resonances at 4.10 GHz, 7.70 GHz, 9.33 GHz, and 10.62 GHz. Very good effective medium ratios (EMR) along with DNG properties are obtained, namely 6.5 and 5.85 for Mg30 and Mg50, respectively, with a physical dimension of 12.5 x 9.5 mm2 for both of the unit cells. Also, the electric field, magnetic field, and surface current distribution at different resonances and the polarization insensitivity at different polarization angles were observed. Thus, the designed new flexible substrate microwave materials based on DNG metamaterials are potential candidates for S-, C- and X-band applications, as well as for flexible microwave technologies. 2021 The Physical Society of the Republic of China (Taiwan)
SponsorThis work is financially supported by the Ministry of Higher Education, Malaysia , the Fundamental Research Grant Schemes (FRGS) , having the research grant number of FRGS/1/2018/TK04/UKM/01/1 .
Languageen
PublisherElsevier
SubjectQuad-band flexible magnesium zinc ferrite
metamaterial
metamaterial unit cells
double-negative (DNG)
microwave substrates
Title"Quad-band flexible magnesium zinc ferrite (MgZnFe2O4)-based double negative metamaterial for microwave applications"
TypeArticle
Pagination351-364
Volume Number71
dc.accessType Abstract Only


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