Abstract—A multi-band ferrite-based metamaterial has been inves-tigated by experiments and simulations. The negative permeability is realized around the ferromagnetic resonance (FMR) frequency which can be influenced by the saturation magnetization 4piMs of the fer-rites. Due to having multiple negative permeability frequency regions around the multiple FMR frequencies, the metamaterials consisting of metallic wires and ferrite rods with various 4piMs possess several passbands in the transmission spectra. The microwave transmission properties of the ferrite-based metamaterials can be not only tuned by the applied magnetic field, but also adjusted by the 4piMs of the ferrite rods. A good agreement between experimental and simulated results i...
We present what is to our knowledge the first dual-band negative index metamaterial that operates in...
Metamaterials are artificial materials that exhibit properties, such as negative index of refraction...
Consider a magnetized ferrite-wire waveguide structure situated between two half free spaces. Ferri...
AbstractIn this paper, we present a tunable dual-band negative refractive index metamaterial (NRIM),...
In this paper, we present a tunable dual-band negative refractive index metamaterial (NRIM), which c...
Copyright © 2013 N. Benmostefa et al. This is an open access article distributed under the Creative ...
AbstractIn this paper, we present a tunable dual-band negative refractive index metamaterial (NRIM),...
Tunable wideband microwave bandstop filters have been investigated by experiments and simulations. T...
A magnetic field tunable, broadband, low-loss, negative refractive index metamaterial is fabricated ...
A new negative refractive index (NRI) metamaterial unit cell is presented in this study. The negativ...
Electromagnetic metamaterials are constructed with sub-wavelength structures that exhibit particular...
We studied the highly symmetric magnetic components of a metamaterial with negative permeability in ...
Electromagnetic metamaterials are constructed with sub-wavelength structures that exhibit particular...
Refractive index is determined by permittivity ϵ and permeability μ, where permittivity å is t...
Metamaterials are designed to have structures that make available properties not found in Nature. Th...
We present what is to our knowledge the first dual-band negative index metamaterial that operates in...
Metamaterials are artificial materials that exhibit properties, such as negative index of refraction...
Consider a magnetized ferrite-wire waveguide structure situated between two half free spaces. Ferri...
AbstractIn this paper, we present a tunable dual-band negative refractive index metamaterial (NRIM),...
In this paper, we present a tunable dual-band negative refractive index metamaterial (NRIM), which c...
Copyright © 2013 N. Benmostefa et al. This is an open access article distributed under the Creative ...
AbstractIn this paper, we present a tunable dual-band negative refractive index metamaterial (NRIM),...
Tunable wideband microwave bandstop filters have been investigated by experiments and simulations. T...
A magnetic field tunable, broadband, low-loss, negative refractive index metamaterial is fabricated ...
A new negative refractive index (NRI) metamaterial unit cell is presented in this study. The negativ...
Electromagnetic metamaterials are constructed with sub-wavelength structures that exhibit particular...
We studied the highly symmetric magnetic components of a metamaterial with negative permeability in ...
Electromagnetic metamaterials are constructed with sub-wavelength structures that exhibit particular...
Refractive index is determined by permittivity ϵ and permeability μ, where permittivity å is t...
Metamaterials are designed to have structures that make available properties not found in Nature. Th...
We present what is to our knowledge the first dual-band negative index metamaterial that operates in...
Metamaterials are artificial materials that exhibit properties, such as negative index of refraction...
Consider a magnetized ferrite-wire waveguide structure situated between two half free spaces. Ferri...