A circular ring-shaped metamaterial (CRM) absorber was designed to harvest radio frequency (RF) energy in the ultra-wideband (UWB) frequency band applications. The proposed metamaterial unit cell features a circular shaped structure, with rectangular strip lines connected in the form of a cross leaving a square shaped slot at center. The unit cell dimensions are 15×15×1.6 mm. The absorber was etched on a low cost FR4 substrate having a dielectric constant of 4.4. Ansys high frequency structure simulator (HFSS) software was used for simulation and the analysis were carried out for unit cell, 2×2, 3×3, and 4×4 array structures. The absorber parameters plotted are absorption characteristics and reflection characteristics. Also, the metamateria...
Abstract We theoretically and experimentally proposed a new structure of ultra-wideband and thin per...
A dual-band perfect metamaterial absorber based on closed ring resonator structures (CRRs) with pola...
42-48A dual-band perfect meta-material absorber based on closed ring resonator structures (CRRs) wit...
A circular ring-shaped metamaterial (CRM) absorber was designed to harvest radio frequency (RF) ener...
A novel metamaterial absorber structure is designed and characterized for microwave energy harvestin...
A novel metamaterial absorber structure is designed and characterized for microwave energy harvestin...
A new metamaterial absorber structure is designed and characterized both numerically and experimenta...
This paper presents the design, simulation, and experimental result of single band circular ring met...
This article reports an ultra-thin, compact metamaterial absorber with wideband absorption at microw...
A metamaterial electromagnetic wave absorber consisting of a big circular ring patch with four small...
This paper proposed a dual resonant circular ring-shaped metamaterial absorber (MMAbs) with wide ope...
A novel dual-band wide-angle ultra-thin absorber composed of dual closed-concentric ten-point stars ...
This paper presents the design and simulation of polarization-independent type of metamaterial absor...
Metasurface (MS) absorbers with polarization-insensitivity and wide-angle reception features have at...
We propose the design of a multiband absorber based on multi-layered square split ring (MSSR) struct...
Abstract We theoretically and experimentally proposed a new structure of ultra-wideband and thin per...
A dual-band perfect metamaterial absorber based on closed ring resonator structures (CRRs) with pola...
42-48A dual-band perfect meta-material absorber based on closed ring resonator structures (CRRs) wit...
A circular ring-shaped metamaterial (CRM) absorber was designed to harvest radio frequency (RF) ener...
A novel metamaterial absorber structure is designed and characterized for microwave energy harvestin...
A novel metamaterial absorber structure is designed and characterized for microwave energy harvestin...
A new metamaterial absorber structure is designed and characterized both numerically and experimenta...
This paper presents the design, simulation, and experimental result of single band circular ring met...
This article reports an ultra-thin, compact metamaterial absorber with wideband absorption at microw...
A metamaterial electromagnetic wave absorber consisting of a big circular ring patch with four small...
This paper proposed a dual resonant circular ring-shaped metamaterial absorber (MMAbs) with wide ope...
A novel dual-band wide-angle ultra-thin absorber composed of dual closed-concentric ten-point stars ...
This paper presents the design and simulation of polarization-independent type of metamaterial absor...
Metasurface (MS) absorbers with polarization-insensitivity and wide-angle reception features have at...
We propose the design of a multiband absorber based on multi-layered square split ring (MSSR) struct...
Abstract We theoretically and experimentally proposed a new structure of ultra-wideband and thin per...
A dual-band perfect metamaterial absorber based on closed ring resonator structures (CRRs) with pola...
42-48A dual-band perfect meta-material absorber based on closed ring resonator structures (CRRs) wit...