This paper presents the design and analysis of a novel split-H-shaped metamaterial unit cell structure that is applicable in a multi-band frequency range and that exhibits negative permeability and permittivity in those frequency bands. In the basic design, the separate split-square resonators are joined by a metal link to form an H-shaped unit structure. Moreover, an analysis and a comparison of the 1 × 1 array and 2 × 2 array structures and the 1 × 1 and 2 × 2 unit cell configurations were performed. All of these configurations demonstrate multi-band operating frequencies (S-band, C-band, X-band and Ku-band) with double-negative characteristics. The equivalent circuit model and measured result for each unit cell are presented to validate ...
A new tri-band metamaterial unit-cell structure designed and simulated that has multiple octagonal m...
This research article describes a modified Coptic cross shaped split ring resonator (SRR) based meta...
This thesis involves analysis of artificial materials to investigate metamaterial behavior and chara...
A new design and analysis of a wide-band double-negative metamaterial, considering a frequency range...
A new design and analysis of a wide-band double-negative metamaterial, considering a frequency range...
A new design and analysis of a wide-band double-negative metamaterial, considering a frequency range...
A new design and analysis of double negative metamaterial unit cell geometry, considering frequency ...
A new design and analysis of a wide-band double-negative metamaterial, considering a frequency range...
In this article, a modified Theta shaped, compact double negative metamaterial structure is designed...
The principle purpose of this study was to produce a horizontally inverse double L-shaped metamateri...
In this thesis, multi band components are realized by exploiting the electromagnetic metamaterial ef...
Abstract In this article, a unique metamaterial (MTM) structure is presented that exhibits four reso...
In this article, a unique metamaterial (MTM) structure is presented that exhibits four resonances of...
This study presents a double-inverse-epsilon-shaped, triple-band epsilon-negative (ENG) metamaterial...
A novel I-shaped metamaterial (ISMeTM) using split-ring resonator (SRR) for multi-band wireless comm...
A new tri-band metamaterial unit-cell structure designed and simulated that has multiple octagonal m...
This research article describes a modified Coptic cross shaped split ring resonator (SRR) based meta...
This thesis involves analysis of artificial materials to investigate metamaterial behavior and chara...
A new design and analysis of a wide-band double-negative metamaterial, considering a frequency range...
A new design and analysis of a wide-band double-negative metamaterial, considering a frequency range...
A new design and analysis of a wide-band double-negative metamaterial, considering a frequency range...
A new design and analysis of double negative metamaterial unit cell geometry, considering frequency ...
A new design and analysis of a wide-band double-negative metamaterial, considering a frequency range...
In this article, a modified Theta shaped, compact double negative metamaterial structure is designed...
The principle purpose of this study was to produce a horizontally inverse double L-shaped metamateri...
In this thesis, multi band components are realized by exploiting the electromagnetic metamaterial ef...
Abstract In this article, a unique metamaterial (MTM) structure is presented that exhibits four reso...
In this article, a unique metamaterial (MTM) structure is presented that exhibits four resonances of...
This study presents a double-inverse-epsilon-shaped, triple-band epsilon-negative (ENG) metamaterial...
A novel I-shaped metamaterial (ISMeTM) using split-ring resonator (SRR) for multi-band wireless comm...
A new tri-band metamaterial unit-cell structure designed and simulated that has multiple octagonal m...
This research article describes a modified Coptic cross shaped split ring resonator (SRR) based meta...
This thesis involves analysis of artificial materials to investigate metamaterial behavior and chara...