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Polychromatic full-polarization control in mid-infrared light
by
Wang, Xiuxia
, Wang, Jiuxu
, Lu, Wei
, Chen, Jin
, Chen, Xiaoshuang
, Liu, Xingsi
, Qiu, Cheng-Wei
, Yu, Feilong
, Shi, Yuzhi
, Zhao, Zengyue
, Bao, Yanjun
, Li, Guanhai
, Liu, Wen
, Chen, Rongsheng
in
639/624/1075/1082
/ 639/624/1107/510
/ 639/624/1111/1113
/ 639/624/399/1015
/ Efficiency
/ Etching
/ Lasers
/ Light
/ Microwaves
/ Optical and Electronic Materials
/ Optical Devices
/ Optics
/ Photonics
/ Physics
/ Physics and Astronomy
/ Polarization
/ Remote sensing
/ RF and Optical Engineering
/ Science
/ Silicon
/ Wavelength
2023
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Polychromatic full-polarization control in mid-infrared light
by
Wang, Xiuxia
, Wang, Jiuxu
, Lu, Wei
, Chen, Jin
, Chen, Xiaoshuang
, Liu, Xingsi
, Qiu, Cheng-Wei
, Yu, Feilong
, Shi, Yuzhi
, Zhao, Zengyue
, Bao, Yanjun
, Li, Guanhai
, Liu, Wen
, Chen, Rongsheng
in
639/624/1075/1082
/ 639/624/1107/510
/ 639/624/1111/1113
/ 639/624/399/1015
/ Efficiency
/ Etching
/ Lasers
/ Light
/ Microwaves
/ Optical and Electronic Materials
/ Optical Devices
/ Optics
/ Photonics
/ Physics
/ Physics and Astronomy
/ Polarization
/ Remote sensing
/ RF and Optical Engineering
/ Science
/ Silicon
/ Wavelength
2023
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Polychromatic full-polarization control in mid-infrared light
by
Wang, Xiuxia
, Wang, Jiuxu
, Lu, Wei
, Chen, Jin
, Chen, Xiaoshuang
, Liu, Xingsi
, Qiu, Cheng-Wei
, Yu, Feilong
, Shi, Yuzhi
, Zhao, Zengyue
, Bao, Yanjun
, Li, Guanhai
, Liu, Wen
, Chen, Rongsheng
in
639/624/1075/1082
/ 639/624/1107/510
/ 639/624/1111/1113
/ 639/624/399/1015
/ Efficiency
/ Etching
/ Lasers
/ Light
/ Microwaves
/ Optical and Electronic Materials
/ Optical Devices
/ Optics
/ Photonics
/ Physics
/ Physics and Astronomy
/ Polarization
/ Remote sensing
/ RF and Optical Engineering
/ Science
/ Silicon
/ Wavelength
2023
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Polychromatic full-polarization control in mid-infrared light
Journal Article
Polychromatic full-polarization control in mid-infrared light
2023
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Overview
Objects with different shapes, materials and temperatures can emit distinct polarizations and spectral information in mid-infrared band, which provides a unique signature in the transparent window for object identification. However, the crosstalk among various polarization and wavelength channels prevents from accurate mid-infrared detections at high signal-to-noise ratio. Here, we report full-polarization metasurfaces to break the inherent eigen-polarization constraint over the wavelengths in mid-infrared. This recipe enables to select arbitrary orthogonal polarization basis at individual wavelength independently, therefore alleviating the crosstalk and efficiency degradation. A six-channel all-silicon metasurface is specifically presented to project focused mid-infrared light to distinct positions at three wavelengths, each with a pair of arbitrarily chosen orthogonal polarizations. An isolation ratio of 117 between neighboring polarization channels is experimentally recorded, exhibiting detection sensitivity one order of magnitude higher than existing infrared detectors. Remarkably, the high aspect ratio ~30 of our meta-structures manufactured by deep silicon etching technology at temperature −150 °C guarantees the large and precise phase dispersion control over a broadband from 3 to 4.5 μm. We believe our results would benefit the noise-immune mid-infrared detections in remote sensing and space-to-ground communications.
Dispersive eigen-polarization engineering enabled polychromatic full-polarization control in mid-infrared.
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