Detection of IR and sub/THz radiation using MCT thin layer structures: design of the chip, optical elements and antenna pattern

Two-color un-cooled narrow-gap MCT (mercury-cadmium-telluride) semiconductor thin layers, grown by liquid phase epitaxy or molecular beam epitaxy methods on high resistivity CdZnTe or GaAs substrates, with bow-type antennas were considered both as sub-terahertz direct detection bolometers and 3...10...

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Main Author: F.F. Sizov
Format: Article
Language:English
Published: National Academy of Sciences of Ukraine. Institute of Semi conductor physics. 2016-07-01
Series:Semiconductor Physics, Quantum Electronics & Optoelectronics
Subjects:
Online Access:http://journal-spqeo.org.ua/n2_2016/P149-155abstr.html
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author F.F. Sizov
author_facet F.F. Sizov
author_sort F.F. Sizov
collection DOAJ
description Two-color un-cooled narrow-gap MCT (mercury-cadmium-telluride) semiconductor thin layers, grown by liquid phase epitaxy or molecular beam epitaxy methods on high resistivity CdZnTe or GaAs substrates, with bow-type antennas were considered both as sub-terahertz direct detection bolometers and 3...10-micrometer infrared photoconductors. Optical system with aspheric THz lenses were designed and manufactured. An antenna pattern of structures on the thick substrate was discussed, and sensitivity of detector in both IR and sub-THz regions was measured.
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1605-6582
language English
last_indexed 2024-12-18T04:12:08Z
publishDate 2016-07-01
publisher National Academy of Sciences of Ukraine. Institute of Semi conductor physics.
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series Semiconductor Physics, Quantum Electronics & Optoelectronics
spelling doaj.art-7bd65e21392e4a599b152b65bdbd696a2022-12-21T21:21:27ZengNational Academy of Sciences of Ukraine. Institute of Semi conductor physics.Semiconductor Physics, Quantum Electronics & Optoelectronics1560-80341605-65822016-07-0119214915510.15407/spqeo19.02.149Detection of IR and sub/THz radiation using MCT thin layer structures: design of the chip, optical elements and antenna patternF.F. Sizov0V. Lashkaryov Institute of Semiconductor Physics, NAS of Ukraine, 41, prospect Nauky, 03680 Kyiv, Ukraine Two-color un-cooled narrow-gap MCT (mercury-cadmium-telluride) semiconductor thin layers, grown by liquid phase epitaxy or molecular beam epitaxy methods on high resistivity CdZnTe or GaAs substrates, with bow-type antennas were considered both as sub-terahertz direct detection bolometers and 3...10-micrometer infrared photoconductors. Optical system with aspheric THz lenses were designed and manufactured. An antenna pattern of structures on the thick substrate was discussed, and sensitivity of detector in both IR and sub-THz regions was measured.http://journal-spqeo.org.ua/n2_2016/P149-155abstr.htmlmctun-cooled two-color detectorantenna pattern
spellingShingle F.F. Sizov
Detection of IR and sub/THz radiation using MCT thin layer structures: design of the chip, optical elements and antenna pattern
Semiconductor Physics, Quantum Electronics & Optoelectronics
mct
un-cooled two-color detector
antenna pattern
title Detection of IR and sub/THz radiation using MCT thin layer structures: design of the chip, optical elements and antenna pattern
title_full Detection of IR and sub/THz radiation using MCT thin layer structures: design of the chip, optical elements and antenna pattern
title_fullStr Detection of IR and sub/THz radiation using MCT thin layer structures: design of the chip, optical elements and antenna pattern
title_full_unstemmed Detection of IR and sub/THz radiation using MCT thin layer structures: design of the chip, optical elements and antenna pattern
title_short Detection of IR and sub/THz radiation using MCT thin layer structures: design of the chip, optical elements and antenna pattern
title_sort detection of ir and sub thz radiation using mct thin layer structures design of the chip optical elements and antenna pattern
topic mct
un-cooled two-color detector
antenna pattern
url http://journal-spqeo.org.ua/n2_2016/P149-155abstr.html
work_keys_str_mv AT ffsizov detectionofirandsubthzradiationusingmctthinlayerstructuresdesignofthechipopticalelementsandantennapattern