In this work, we present and explore the characteristics of a plasmonic metamaterial absorber based on a metal–insulator–metal functional stack. The proposed structure consists of glass “sandwiched” between a silver reflector and a titanium metallic disc, embedded inside a Ti periodic nano-hole array, as an outside layer. In the visible and infrared regimes, the optical absorption spectra of such structures have been investigated using the finite difference time domain method. The impact of modifying nano-hole and embedded disc diameters on the absorber’s performance has been investigated. Changing these two distinct structural parameters tunes the coupling effect between the localized and propagating surface plasmons. The adequate bandwidt...
Electromagnetic wave absorbers have been investigated for many years with the aim of achieving high ...
The spectral shift between near- and far-field responses of the plasmonic nanoantennas has negative ...
Based on an integrated array of refractory titanium nitride (TiN), a metasurface perfect absorber (M...
This paper investigates the absorption spectra of a plasmonic metamaterial absorber in the visible a...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Achieving the broadband response of metamaterial absorbers has been quite challenging due to the in...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Achieving the broadband response of metamaterial absorbers has been quite challenging due to the in...
Plasmonic metamaterials are artificial materials typically composed of noble metals in which the fea...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Plasmonic metamaterials are artificial materials typically composed of noble metals in which the fea...
Electromagnetic wave absorbers have been investigated for many years with the aim of achieving high ...
The spectral shift between near- and far-field responses of the plasmonic nanoantennas has negative ...
Based on an integrated array of refractory titanium nitride (TiN), a metasurface perfect absorber (M...
This paper investigates the absorption spectra of a plasmonic metamaterial absorber in the visible a...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Achieving the broadband response of metamaterial absorbers has been quite challenging due to the in...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Achieving the broadband response of metamaterial absorbers has been quite challenging due to the in...
Plasmonic metamaterials are artificial materials typically composed of noble metals in which the fea...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Plasmonic metamaterials are artificial materials typically composed of noble metals in which the fea...
Electromagnetic wave absorbers have been investigated for many years with the aim of achieving high ...
The spectral shift between near- and far-field responses of the plasmonic nanoantennas has negative ...
Based on an integrated array of refractory titanium nitride (TiN), a metasurface perfect absorber (M...