Abstract In this paper, a tuned metamaterial (MTM) consisting of a symmetric split ring resonator is presented that exhibits epsilon negative (ENG), near zero permeability and refractive index properties for multiband microwave applications. The proposed metamaterial is constituted on a Rogers (RT-5880) substrate with 1.57 mm thickness and the electrical dimension of 0.14λ × 0.14λ, where wavelength, λ is calculated at 4.2 GHz. The symmetric resonating patch is subdivided into four equal and similar quartiles with two interconnecting split rings in each quartile. The quartiles are connected at the center of the substrate with a square metal strip with which four tuning metal strips are attached. These tuning metal strips are acted as spacers...
The principle purpose of this study was to produce a horizontally inverse double L-shaped metamateri...
We report a new design of triple-band electric metamaterial resonator (TBEMR) based on integration o...
In this thesis, multi band components are realized by exploiting the electromagnetic metamaterial ef...
Abstract An inductively tuned modified split-ring resonator-based metamaterial (MTM) is presented in...
Abstract In this article, a unique metamaterial (MTM) structure is presented that exhibits four reso...
In this article, a symmetric split ring resonator (SRR) based metamaterial (MTM) is presented that e...
In this article, a unique metamaterial (MTM) structure is presented that exhibits four resonances of...
This paper presents a novel Double-negative (DNG) metamaterial (MM) resonator with a mirror-symmetri...
This study presents a double-inverse-epsilon-shaped, triple-band epsilon-negative (ENG) metamaterial...
This article presents a novel metamaterial (MTM) with a mirror symmetric resonator that exhibits mul...
The design, numerical simulation and experimental measurement of a novel metamaterial with an electr...
This study has investigated the impact of inverse G-like shape resonators that exhibited epsilon neg...
This research article describes a modified Coptic cross shaped split ring resonator (SRR) based meta...
A new, compact planar wideband negative index metamaterial based on a modified split ring resonator ...
A new, compact planar wideband negative index metamaterial based on a modified split ring resonator ...
The principle purpose of this study was to produce a horizontally inverse double L-shaped metamateri...
We report a new design of triple-band electric metamaterial resonator (TBEMR) based on integration o...
In this thesis, multi band components are realized by exploiting the electromagnetic metamaterial ef...
Abstract An inductively tuned modified split-ring resonator-based metamaterial (MTM) is presented in...
Abstract In this article, a unique metamaterial (MTM) structure is presented that exhibits four reso...
In this article, a symmetric split ring resonator (SRR) based metamaterial (MTM) is presented that e...
In this article, a unique metamaterial (MTM) structure is presented that exhibits four resonances of...
This paper presents a novel Double-negative (DNG) metamaterial (MM) resonator with a mirror-symmetri...
This study presents a double-inverse-epsilon-shaped, triple-band epsilon-negative (ENG) metamaterial...
This article presents a novel metamaterial (MTM) with a mirror symmetric resonator that exhibits mul...
The design, numerical simulation and experimental measurement of a novel metamaterial with an electr...
This study has investigated the impact of inverse G-like shape resonators that exhibited epsilon neg...
This research article describes a modified Coptic cross shaped split ring resonator (SRR) based meta...
A new, compact planar wideband negative index metamaterial based on a modified split ring resonator ...
A new, compact planar wideband negative index metamaterial based on a modified split ring resonator ...
The principle purpose of this study was to produce a horizontally inverse double L-shaped metamateri...
We report a new design of triple-band electric metamaterial resonator (TBEMR) based on integration o...
In this thesis, multi band components are realized by exploiting the electromagnetic metamaterial ef...