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Terahertz imaging using photomixers based on quantum well photodetectors
Author(s) -
Tao Zhou,
Hua Li,
Weikang Wan,
Zhanglong Fu,
Juncheng Cao
Publication year - 2017
Publication title -
aip advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.421
H-Index - 58
ISSN - 2158-3226
DOI - 10.1063/1.4993634
Subject(s) - terahertz radiation , photodetector , quantum cascade laser , optics , microwave , optoelectronics , laser , photomixing , signal (programming language) , microwave imaging , physics , cascade , far infrared laser , materials science , terahertz metamaterials , chemistry , programming language , chromatography , quantum mechanics , computer science
Due to the fast intersubband transitions, the terahertz (THz) quantum well photodetector (QWP) is supposed to work fast. Recently it has been demonstrated that the THz QWP can detect the THz light modulated at 6.2 GHz and therefore it can be used as a photomixer [H. Li et al., Sci. Rep. 7, 3452 (2017)]. In this work, the authors report a novel active THz imaging using THz QWP photomixers. The THz radiation source used for this imaging application is a multi-mode THz quantum cascade laser (QCL) operating in continuous wave mode. When the fast THz QWP is illuminated by the multi-mode THz radiation, the intermediate frequency signal that is resulted from the frequency beating between the neighbouring THz modes of the QCL can be extracted from the QWP mesa for imaging applications. Employing the technique, the frequency can be down-converted from the THz range to the microwave regime. And therefore, the signal can then be amplified, filtered, and detected using the mature microwave technology

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