Infrared absorbers are essential structures in the design of thermal emitters and thermal infrared imagers. In this study, we propose simple topologies of wideband metamaterial absorbers operating in the long-wave infrared or in the mid-wave infrared (MWIR) wavelengths of the electromagnetic spectrum where the atmosphere shows transparent behavior. Suggested metamaterial absorbers are mostly thin structures that consist of three functional layers from top to bottom: a periodically patterned metal layer, a planar dielectric layer, and a ground metal layer. The pattern of the top metal layer is four-fold symmetric to guarantee the polarization insensitivity of the absorber under normal incidence of light. In addition, a geometrically simple m...
This paper investigates the absorption spectra of a plasmonic metamaterial absorber in the visible a...
Broadband long-wavelength infrared (LWIR) optical absorbers have important applications in thermal e...
The visible and infrared wavelengths are the most frequently used electromagnetic (EM) waves in the ...
In this thesis, design and simulation of wideband metamaterial absorbers are investigated in the lon...
In this study, metamaterial absorber structures that operate in the mid-wave infrared (MWIR) region ...
Infrared absorber concept is a vibrant research topic because of the importance of real world applic...
In this paper, we present silicon nitride metamaterial absorber designs that accomplish large bandwi...
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 ...
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 ...
A metamaterial composed of thin metallic strips as an efficient broadband absorber in the mid-infrar...
This paper investigates the absorption spectra of a plasmonic metamaterial absorber in the visible a...
Broadband long-wavelength infrared (LWIR) optical absorbers have important applications in thermal e...
The visible and infrared wavelengths are the most frequently used electromagnetic (EM) waves in the ...
In this thesis, design and simulation of wideband metamaterial absorbers are investigated in the lon...
In this study, metamaterial absorber structures that operate in the mid-wave infrared (MWIR) region ...
Infrared absorber concept is a vibrant research topic because of the importance of real world applic...
In this paper, we present silicon nitride metamaterial absorber designs that accomplish large bandwi...
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 ...
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 ...
A metamaterial composed of thin metallic strips as an efficient broadband absorber in the mid-infrar...
This paper investigates the absorption spectra of a plasmonic metamaterial absorber in the visible a...
Broadband long-wavelength infrared (LWIR) optical absorbers have important applications in thermal e...
The visible and infrared wavelengths are the most frequently used electromagnetic (EM) waves in the ...