This paper introduces a metamaterial energy harvester that is compact, highly efficient, and capable of operating at wide angles. The proposed design has an outer ring resonator housing inverted T-shaped resonators, and it can operate at two distinct frequencies, 3.2 GHz and 5.4 GHz. The structure’s impedance is carefully designed to align with that of free space, ensuring efficient capture of incident electromagnetic power with minimal reflection. This enables the resistor load to receive power in the most efficient manner. Based on the simulation findings, the proposed harvester exhibits a notably higher conversion efficiency of around 97 %. To ensure the accuracy and reliability of the simulation outcomes, we fabricated a 3x3 cell ...
This paper reports the design, fabrication, and measurement of a metasurface with wide-angle-recepti...
In this study, a novel octagonal shaped metamaterial based broadband absorber is proposed for energy...
A novel Compact Complementary Split Ring Resonator (CSRR) metamaterial unit cell with perfect absorp...
A high performance metamaterial device for electromagnetic energy harvesting is presented. The unit ...
A new wide-angle and polarization-insensitive metasurface (MS) instead of traditional antenna is bui...
A new wide-angle and polarization-insensitive metasurface (MS) instead of traditional antenna is bui...
This work introduces a miniaturized metasurface (MS) energy harvester operating at 5.54 GHz with a h...
This work introduces a miniaturized metasurface (MS) energy harvester operating at 5.54 GHz with a h...
A novel metamaterial absorber structure is designed and characterized for microwave energy harvestin...
This work introduces a miniaturized metasurface (MS) energy harvester operating at 5.54 GHz with a h...
A novel metamaterial absorber structure is designed and characterized for microwave energy harvestin...
This work was aimed to design a metamaterial energy harvester with integrated energy harvesting and ...
A new metamaterial absorber structure is designed and characterized both numerically and experimenta...
International audienceIn this paper, we demonstrate the feasibility of harvesting electromagnetic wa...
International audienceIn this paper, we demonstrate the feasibility of harvesting electromagnetic wa...
This paper reports the design, fabrication, and measurement of a metasurface with wide-angle-recepti...
In this study, a novel octagonal shaped metamaterial based broadband absorber is proposed for energy...
A novel Compact Complementary Split Ring Resonator (CSRR) metamaterial unit cell with perfect absorp...
A high performance metamaterial device for electromagnetic energy harvesting is presented. The unit ...
A new wide-angle and polarization-insensitive metasurface (MS) instead of traditional antenna is bui...
A new wide-angle and polarization-insensitive metasurface (MS) instead of traditional antenna is bui...
This work introduces a miniaturized metasurface (MS) energy harvester operating at 5.54 GHz with a h...
This work introduces a miniaturized metasurface (MS) energy harvester operating at 5.54 GHz with a h...
A novel metamaterial absorber structure is designed and characterized for microwave energy harvestin...
This work introduces a miniaturized metasurface (MS) energy harvester operating at 5.54 GHz with a h...
A novel metamaterial absorber structure is designed and characterized for microwave energy harvestin...
This work was aimed to design a metamaterial energy harvester with integrated energy harvesting and ...
A new metamaterial absorber structure is designed and characterized both numerically and experimenta...
International audienceIn this paper, we demonstrate the feasibility of harvesting electromagnetic wa...
International audienceIn this paper, we demonstrate the feasibility of harvesting electromagnetic wa...
This paper reports the design, fabrication, and measurement of a metasurface with wide-angle-recepti...
In this study, a novel octagonal shaped metamaterial based broadband absorber is proposed for energy...
A novel Compact Complementary Split Ring Resonator (CSRR) metamaterial unit cell with perfect absorp...