An ultra-thin nanostructured plasmonic light absorber with an insulator-metal-insulator-metal (IMIM) architecture is designed and numerically studied. The IMIM structure is capable to absorb up to about 82.5% of visible light in a broad wavelength range of 300-750 nm. The absorption by the bottom metal is only 6% of that of the top metal. The results show that the IMIM architecture has weak dependence of the angle of the incident light. Interestingly, by varying the top insulator material the optical absorption spectrum can be shifted more than 180 nm as compared to the conventional air-metal-insulator-metal structure. The IMIM structure can be applied for different plasmonic devices with improved performance
Plasmonic nanostructures are supporting plasmonic resonances which allow to confine the electromagne...
Based on a two-dimensional plasmonic metal-dielectric-metal waveguide with a thin metallic layer and...
Plasmonic nanostructures are supporting plasmonic resonances which allow to confine the electromagne...
An ultra-thin nanostructured plasmonic light absorber with an insulator-metal-insulator-metal (IMIM)...
Resonant plasmonic and metamaterial structures allow for control of fundamental optical processes su...
Cataloged from PDF version of article.Thesis (M.S.): Bilkent University, Department of Electrical an...
Nano-porous ultrathin plasmonic insulator-metal-insulator-metal (IMIM) solar cell with high power co...
We have demonstrated the possibility of quality light absorption in plasmonic nanostructured metal-s...
Nano-porous ultrathin plasmonic insulator-metal-insulator-metal (IMIM) solar cell with high power co...
In this work, we present and explore the characteristics of a plasmonic metamaterial absorber based ...
In this paper, we propose a facile route to fabricate a metal insulator multilayer stack to obtain u...
© 2019, Springer Science+Business Media, LLC, part of Springer Nature. In this paper, a route to ult...
Resonant plasmonic and metamaterial structures allow for control of fundamental optical processes su...
Plasmonically enhanced absorbing structures have been emerging as strong candidates for photovoltaic...
Based on a two-dimensional plasmonic metal-dielectric-metal waveguide with a thin metallic layer and...
Plasmonic nanostructures are supporting plasmonic resonances which allow to confine the electromagne...
Based on a two-dimensional plasmonic metal-dielectric-metal waveguide with a thin metallic layer and...
Plasmonic nanostructures are supporting plasmonic resonances which allow to confine the electromagne...
An ultra-thin nanostructured plasmonic light absorber with an insulator-metal-insulator-metal (IMIM)...
Resonant plasmonic and metamaterial structures allow for control of fundamental optical processes su...
Cataloged from PDF version of article.Thesis (M.S.): Bilkent University, Department of Electrical an...
Nano-porous ultrathin plasmonic insulator-metal-insulator-metal (IMIM) solar cell with high power co...
We have demonstrated the possibility of quality light absorption in plasmonic nanostructured metal-s...
Nano-porous ultrathin plasmonic insulator-metal-insulator-metal (IMIM) solar cell with high power co...
In this work, we present and explore the characteristics of a plasmonic metamaterial absorber based ...
In this paper, we propose a facile route to fabricate a metal insulator multilayer stack to obtain u...
© 2019, Springer Science+Business Media, LLC, part of Springer Nature. In this paper, a route to ult...
Resonant plasmonic and metamaterial structures allow for control of fundamental optical processes su...
Plasmonically enhanced absorbing structures have been emerging as strong candidates for photovoltaic...
Based on a two-dimensional plasmonic metal-dielectric-metal waveguide with a thin metallic layer and...
Plasmonic nanostructures are supporting plasmonic resonances which allow to confine the electromagne...
Based on a two-dimensional plasmonic metal-dielectric-metal waveguide with a thin metallic layer and...
Plasmonic nanostructures are supporting plasmonic resonances which allow to confine the electromagne...