AbstractA suspended array of square metallic patches on a thin dielectric layer is introduced as a terahertz absorber. The absorber is fabricated on a metalized substrate and the device exhibits metamaterial behavior at specific frequencies determined by the size of the patches. It is feasible to place patches with different sizes in an array formation for a broadband absorber. Design of the absorber is described using electromagnetic simulations. The absorber structure was fabricated on a silicon wafer and its characteristics were measured using a terahertz time domain spectroscope. The measured data match well the simulations indicating strong absorption peaks in a band of 0.5-2 THz
Single-layer metallic rings are the effective structure cell which are widely used to design single-...
A thin-flexible and polarization-insensitive multiband terahertz metamaterial absorber (MMA) has bee...
Sabah, Cumali/0000-0002-4346-3537; Altan, Hakan/0000-0002-2456-8827WOS: 000435923500002In this work,...
An array of square metallic patches on a thin suspended dielectric layer is introduced as an effecti...
AbstractA suspended array of square metallic patches on a thin dielectric layer is introduced as a t...
A suspended array of square metallic patches on a thin dielectric layer is introduced as a terahertz...
An array of square metallic patches on a thin suspended dielectric layer is introduced as an effecti...
The function of metamaterials targeted for operation at terahertz frequencies was investigated inclu...
In recent years metamaterials have been extensively researched and show strong potential to improve ...
Metamaterials (MM), artificial materials engineered to have properties that may not be found in natu...
Metamaterials (MM), artificial materials engineered to have properties that may not be found in natu...
This paper presents and evaluates a new terahertz metamaterial absorber (MMA) for sensing applicatio...
An ultra-thin narrow-band metamaterial absorber (MA) based on a periodic array of circular...
Metamaterial absorbers have attracted considerable attention for applications in the terahertz range...
To solve the problem of complex structure and narrow absorption band of most of today′s terahertz ab...
Single-layer metallic rings are the effective structure cell which are widely used to design single-...
A thin-flexible and polarization-insensitive multiband terahertz metamaterial absorber (MMA) has bee...
Sabah, Cumali/0000-0002-4346-3537; Altan, Hakan/0000-0002-2456-8827WOS: 000435923500002In this work,...
An array of square metallic patches on a thin suspended dielectric layer is introduced as an effecti...
AbstractA suspended array of square metallic patches on a thin dielectric layer is introduced as a t...
A suspended array of square metallic patches on a thin dielectric layer is introduced as a terahertz...
An array of square metallic patches on a thin suspended dielectric layer is introduced as an effecti...
The function of metamaterials targeted for operation at terahertz frequencies was investigated inclu...
In recent years metamaterials have been extensively researched and show strong potential to improve ...
Metamaterials (MM), artificial materials engineered to have properties that may not be found in natu...
Metamaterials (MM), artificial materials engineered to have properties that may not be found in natu...
This paper presents and evaluates a new terahertz metamaterial absorber (MMA) for sensing applicatio...
An ultra-thin narrow-band metamaterial absorber (MA) based on a periodic array of circular...
Metamaterial absorbers have attracted considerable attention for applications in the terahertz range...
To solve the problem of complex structure and narrow absorption band of most of today′s terahertz ab...
Single-layer metallic rings are the effective structure cell which are widely used to design single-...
A thin-flexible and polarization-insensitive multiband terahertz metamaterial absorber (MMA) has bee...
Sabah, Cumali/0000-0002-4346-3537; Altan, Hakan/0000-0002-2456-8827WOS: 000435923500002In this work,...