The paper reveals the design of a unit cell of a metamaterial that shows more than 2 GHz wideband near zero refractive index (NZRI) property in the C-band region of microwave spectra. The two arms of the unit cell were splitted in such a way that forms a near-pi-shape structure on epoxy resin fiber (FR-4) substrate material. The reflection and transmission characteristics of the unit cell were achieved by utilizing finite integration technique based simulation software. Measured results were presented, which complied well with simulated results. The unit cell was then applied to build a single layer rectangular-shaped cloak that operates in the C-band region where a metal cylinder was perfectly hidden electromagnetically by reducing the sca...
The term “metamaterial” was first introduced in electromagnetics to include a wide variety of struct...
The quest for invisibility has made a deep ardour among research community over the decade. The inve...
This paper presents the design, simulation, manufacturing and testing of a simple invisibility cloak...
The invisibility cloak is the device that prevents the system including the cloak and the concealed ...
The design of a cylindrical transmission cloak that provides low scattering cross width (SCW) at mic...
A novel method to miniaturize electromagnetic invisibility cloaks is introduced using Double Near Ze...
Artificially structured metamaterials have enabled unprecedented flexibility in manipulating electro...
We present a cylindrical microwave cloak, which provides low total scattering cross width (TSCW) for...
The exciting features of metamaterial in conjunction with transformation optics leads to various app...
Metamaterials, a kind of artificially structured materials with exotic optical properties, offer a r...
Optical metamaterials—artificially structured materials with engineered electromagnetic responses at...
© 2018 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
A method is introduced to miniaturize invisibility cloaks by 50% using wave tailoring and finite/ no...
An ideal transformation-based omnidirectional cloak always relies on metamaterials with extreme para...
A novel microwave cloak using circular split ring resonator (SRR) based metamaterial structure has b...
The term “metamaterial” was first introduced in electromagnetics to include a wide variety of struct...
The quest for invisibility has made a deep ardour among research community over the decade. The inve...
This paper presents the design, simulation, manufacturing and testing of a simple invisibility cloak...
The invisibility cloak is the device that prevents the system including the cloak and the concealed ...
The design of a cylindrical transmission cloak that provides low scattering cross width (SCW) at mic...
A novel method to miniaturize electromagnetic invisibility cloaks is introduced using Double Near Ze...
Artificially structured metamaterials have enabled unprecedented flexibility in manipulating electro...
We present a cylindrical microwave cloak, which provides low total scattering cross width (TSCW) for...
The exciting features of metamaterial in conjunction with transformation optics leads to various app...
Metamaterials, a kind of artificially structured materials with exotic optical properties, offer a r...
Optical metamaterials—artificially structured materials with engineered electromagnetic responses at...
© 2018 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
A method is introduced to miniaturize invisibility cloaks by 50% using wave tailoring and finite/ no...
An ideal transformation-based omnidirectional cloak always relies on metamaterials with extreme para...
A novel microwave cloak using circular split ring resonator (SRR) based metamaterial structure has b...
The term “metamaterial” was first introduced in electromagnetics to include a wide variety of struct...
The quest for invisibility has made a deep ardour among research community over the decade. The inve...
This paper presents the design, simulation, manufacturing and testing of a simple invisibility cloak...