A new design and analysis of a wide-band double-negative metamaterial, considering a frequency range of 0.5 to 7 GHz, is presented in this paper. Four different unit cells with varying design parameters are analyzed to evaluate the effects of the unit-cell size on the resonance frequencies of the metamaterial. Moreover, open and interconnected 2 × 2 array structures of unit cells are analyzed. The finite-difference time-domain (FDTD) method, based on the Computer Simulation Technology (CST) Microwave Studio, is utilized in the majority of this investigation. The experimental portion of the study was performed in a semi-anechoic chamber. Good agreement is observed between the simulated and measured S parameters of the developed unit cell an...
This study presents a double-inverse-epsilon-shaped, triple-band epsilon-negative (ENG) metamaterial...
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...
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 ...
This paper presents the design and analysis of a novel split-H-shaped metamaterial unit cell structu...
The aim of this paper is to introduce a compact double-negative (DNG) metamaterial that exhibits a n...
This paper analyzed the new compact design and negative refractive index (NRI) metamaterial for wide...
In this article, a modified Theta shaped, compact double negative metamaterial structure is designed...
A new negative refractive index (NRI) metamaterial unit cell is presented in this study. The negativ...
recently, lots of research has been done for artificial material or metamaterials whose property doe...
The design, numerical simulation and experimental measurement of a novel metamaterial with an electr...
In this thesis, multi band components are realized by exploiting the electromagnetic metamaterial ef...
This study presents a double-inverse-epsilon-shaped, triple-band epsilon-negative (ENG) metamaterial...
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...
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 ...
This paper presents the design and analysis of a novel split-H-shaped metamaterial unit cell structu...
The aim of this paper is to introduce a compact double-negative (DNG) metamaterial that exhibits a n...
This paper analyzed the new compact design and negative refractive index (NRI) metamaterial for wide...
In this article, a modified Theta shaped, compact double negative metamaterial structure is designed...
A new negative refractive index (NRI) metamaterial unit cell is presented in this study. The negativ...
recently, lots of research has been done for artificial material or metamaterials whose property doe...
The design, numerical simulation and experimental measurement of a novel metamaterial with an electr...
In this thesis, multi band components are realized by exploiting the electromagnetic metamaterial ef...
This study presents a double-inverse-epsilon-shaped, triple-band epsilon-negative (ENG) metamaterial...
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...