DocumentCode :
167058
Title :
Wavelength selective surface plasmons enhanced infrared photodetectors
Author :
Young Uk Jung ; Mei Liu ; Bendoym, Igor ; Golovin, Andrii B. ; Crouse, David T.
Author_Institution :
Dept. of Electr. Eng., City Coll. of New York, New York, NY, USA
fYear :
2014
fDate :
2-2 May 2014
Firstpage :
1
Lastpage :
6
Abstract :
Over the decades, Mercury Cadmium Telluride (HgCdTe) has been widely used as a detecting material in conventional IR photodetectors. While HgCdTe material properties have been well understood to use for the semiconductor structures, they have not yet been extensively exploited for the use in metasurfaces, i.e., by engineering the dispersion of surface plasmon in metasurfaces, the incident electromagnetic light is being absorbed and spatially sorted according to different wavelengths. We deposited HgCdTe on the metal substrate to enable surface plasmon modes between the metal-insulator interfaces. We propose various designs of IR photodetectors which are enhanced by the localized or propagating surface plasmon modes. In this work, we use HgCdTe dielectric material is used to absorb the incident light, channel different IR spectral bands, and generate the free carriers. The proposed designs can simultaneously capture light based on the coupling of free space electromagnetic energy to a sub-wavelength plasmonic mode and exhibit efficient light splitting and absorption for the desired dual or multiple bands. The schematics, the absorption in each medium, the operating frequencies, the equivalent models, the electric field distributions, and the Poynting vector fields are provided.
Keywords :
II-VI semiconductors; infrared detectors; light absorption; light propagation; mercury compounds; optical sensors; photodetectors; surface plasmons; vectors; HgCdTe; IR photodetector; IR spectral band; Poynting vector field; dielectric material; electric field distribution; free carrier generation; free space electromagnetic energy coupling; incident electromagnetic light absorption; light splitting; mercury cadmium telluride; metal substrate; metal-insulator interface; semiconductor structure; subwavelength plasmonic mode; surface plasmon propagating mode; wavelength selective surface plasmon enhanced infrared photodetector; Absorption; Detectors; Dual band; Metals; Optical resonators; Plasmons; Resonant frequency; HgCdTe; IR detectors; Metamaterials; Surface plasmons;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Systems, Applications and Technology Conference (LISAT), 2014 IEEE Long Island
Conference_Location :
Farmingdale, NY
Type :
conf
DOI :
10.1109/LISAT.2014.6845202
Filename :
6845202
Link To Document :
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