The absorption properties of HgCdTe-based infrared detectors can be greatly increased in the mid-infrared band, by incorporating nanostructured plasmonic arrays on the illuminated detector face. The array periodicity, combined with the excitation of surface plasmon-polariton stationary modes, enhances the absorption efficiency by a substantial amount, allowing to reduce in turn the HgCdTe absorption thickness
Resonant optical cavities are essential components in mid-infrared applications. However, typical fi...
We consider the possibility to use plasmonics to enhance light trapping in such semiconductor detect...
We consider the possibility to use plasmonics to enhance light trapping in such semiconductor detect...
Multiphysics modeling of a planar HgCdTe-based mid-wavelength infrared (MWIR) focal plane array with...
This paper introduces an analysis on the absorption enhancement in uncooled infrared pixels using re...
Mercury Cadmium Telluride (MCT) is a primary absorber material used in most infrared (IR) detection ...
We investigated the use of plasmonic nanotechnology to enhance the performance of semiconductor infr...
This paper introduces a method for a broadband absorption enhancement in the LWIR range (8-12 μm), i...
Infrared optical detection devices such as photodetectors, solar cells, cameras, and microbolometers...
Mercury Cadmium Telluride (MCT) is the premier active material used in infrared (IR) detection techn...
Nowadays, middle wavelength infrared (MWIR, 3–5 m) photodetectors have been applied in a variety of ...
The feasibility to improve the response of quantum type (photonic) infrared (IR) detectors by applyi...
This paper introduces a method of broadband absorption enhancement that can be integrated with the c...
L’imagerie infrarouge refroidie est portée par une demande forte pour des applications dans les sect...
Recent advances in semiconductor film deposition allow for the growth of heavily-doped germanium wit...
Resonant optical cavities are essential components in mid-infrared applications. However, typical fi...
We consider the possibility to use plasmonics to enhance light trapping in such semiconductor detect...
We consider the possibility to use plasmonics to enhance light trapping in such semiconductor detect...
Multiphysics modeling of a planar HgCdTe-based mid-wavelength infrared (MWIR) focal plane array with...
This paper introduces an analysis on the absorption enhancement in uncooled infrared pixels using re...
Mercury Cadmium Telluride (MCT) is a primary absorber material used in most infrared (IR) detection ...
We investigated the use of plasmonic nanotechnology to enhance the performance of semiconductor infr...
This paper introduces a method for a broadband absorption enhancement in the LWIR range (8-12 μm), i...
Infrared optical detection devices such as photodetectors, solar cells, cameras, and microbolometers...
Mercury Cadmium Telluride (MCT) is the premier active material used in infrared (IR) detection techn...
Nowadays, middle wavelength infrared (MWIR, 3–5 m) photodetectors have been applied in a variety of ...
The feasibility to improve the response of quantum type (photonic) infrared (IR) detectors by applyi...
This paper introduces a method of broadband absorption enhancement that can be integrated with the c...
L’imagerie infrarouge refroidie est portée par une demande forte pour des applications dans les sect...
Recent advances in semiconductor film deposition allow for the growth of heavily-doped germanium wit...
Resonant optical cavities are essential components in mid-infrared applications. However, typical fi...
We consider the possibility to use plasmonics to enhance light trapping in such semiconductor detect...
We consider the possibility to use plasmonics to enhance light trapping in such semiconductor detect...