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      A New Compact Double-Negative Miniaturized Metamaterial for Wideband Operation

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          Abstract

          The aim of this paper is to introduce a compact double-negative (DNG) metamaterial that exhibits a negative refractive index (NRI) bandwidth of more than 3.6 GHz considering the frequency from 2 to 14 GHz. In this framework, two arms of the designed unit cell are split in a way that forms a Modified-Z-shape structure of the FR-4 substrate material. The finite integration technique (FIT)-based Computer Simulation Technology (CST) Microwave Studio is applied for computation, and the experimental setup for measuring the performance is performed inside two waveguide ports. Therefore, the measured data complies well with the simulated data of the unit cell at 0-degree and 90-degree rotation angles. The designed unit cell shows a negative refractive index from 3.482 to 7.096 GHz (bandwidth of 3.61 GHz), 7.876 to 10.047 GHz (bandwidth of 2.171 GHz), and 11.594 to 14 GHz (bandwidth of 2.406 GHz) in the microwave spectra. The design also exhibits almost the same wide negative refractive index bandwidth in the major region of the C-band and X-band if it is rotated 90 degrees. However, the novelty of the proposed structure lies in its effective medium ratio of more than 4, wide bandwidth, and compact size.

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          Composite Medium with Simultaneously Negative Permeability and Permittivity

          We demonstrate a composite medium, based on a periodic array of interspaced conducting nonmagnetic split ring resonators and continuous wires, that exhibits a frequency region in the microwave regime with simultaneously negative values of effective permeability &mgr;(eff)(omega) and permittivity varepsilon(eff)(omega). This structure forms a "left-handed" medium, for which it has been predicted that such phenomena as the Doppler effect, Cherenkov radiation, and even Snell's law are inverted. It is now possible through microwave experiments to test for these effects using this new metamaterial.
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            Negative index material composed of electric and magnetic resonators

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              Compact metamaterial antenna for UWB applications

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                Author and article information

                Contributors
                Role: Academic Editor
                Journal
                Materials (Basel)
                Materials (Basel)
                materials
                Materials
                MDPI
                1996-1944
                13 October 2016
                October 2016
                : 9
                : 10
                : 830
                Affiliations
                [1 ]Space Science Center (ANGKASA), Universiti Kebangsaan Malaysia, 43600 UKM, Bangi, Selangor, Malaysia; mehedi20.kuet@ 123456gmail.com (M.M.H.); sikder_islam@ 123456yahoo.co.uk (S.S.I.)
                [2 ]Department of Electrical, Electronic and Systems Engineering, Universiti Kebangsan Malaysia, 43600 UKM, Bangi, Selangor, Malaysia; tariqul@ 123456ukm.edu.my
                Author notes
                [* ]Correspondence: rashed@ 123456ukm.edu.my ; Tel.: +603-8911-8486
                Article
                materials-09-00830
                10.3390/ma9100830
                5456630
                fb1ce375-c7df-4bd1-bd77-acff3ed580e1
                © 2016 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC-BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 01 September 2016
                : 28 September 2016
                Categories
                Article

                dual band,double-negative metamaterial,effective medium ratio,wide bandwidth

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