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High-Discrimination Circular Polarization Detection Based on Dielectric-Metal-Hybrid Chiral Metamirror Integrated Quantum Well Infrared Photodetectors

Circular polarization detection enables a wide range of applications. With the miniaturization of optoelectronic systems, integrated circular polarization detectors with native sensitivity to the spin state of light have become highly sought after. The key issues with this type of device are its low...

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Autores principales: Shen, Jinyong, Zhu, Tianyun, Zhou, Jing, Chu, Zeshi, Ren, Xiansong, Deng, Jie, Dai, Xu, Li, Fangzhe, Wang, Bo, Chen, Xiaoshuang, Lu, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9823415/
https://www.ncbi.nlm.nih.gov/pubmed/36616770
http://dx.doi.org/10.3390/s23010168
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author Shen, Jinyong
Zhu, Tianyun
Zhou, Jing
Chu, Zeshi
Ren, Xiansong
Deng, Jie
Dai, Xu
Li, Fangzhe
Wang, Bo
Chen, Xiaoshuang
Lu, Wei
author_facet Shen, Jinyong
Zhu, Tianyun
Zhou, Jing
Chu, Zeshi
Ren, Xiansong
Deng, Jie
Dai, Xu
Li, Fangzhe
Wang, Bo
Chen, Xiaoshuang
Lu, Wei
author_sort Shen, Jinyong
collection PubMed
description Circular polarization detection enables a wide range of applications. With the miniaturization of optoelectronic systems, integrated circular polarization detectors with native sensitivity to the spin state of light have become highly sought after. The key issues with this type of device are its low circular polarization extinction ratios (CPERs) and reduced responsivities. Metallic two-dimensional chiral metamaterials have been integrated with detection materials for filterless circular polarization detection. However, the CPERs of such devices are typically below five, and the light absorption in the detection materials is hardly enhanced and is even sometimes reduced. Here, we propose to sandwich multiple quantum wells between a dielectric two-dimensional chiral metamaterial and a metal grating to obtain both a high CPER and a photoresponse enhancement. The dielectric-metal-hybrid chiral metamirror integrated quantum well infrared photodetector (QWIP) exhibits a CPER as high as 100 in the long wave infrared range, exceeding all reported CPERs for integrated circular polarization detectors. The absorption efficiency of this device reaches 54%, which is 17 times higher than that of a standard 45° edge facet coupled device. The circular polarization discrimination is attributed to the interference between the principle-polarization radiation and the cross-polarization radiation of the chiral structure during multiple reflections and the structure-material double polarization selection. The enhanced absorption efficiency is due to the excitation of a surface plasmon polariton wave. The dielectric-metal-hybrid chiral mirror structure is compatible with QWIP focal plane arrays.
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spelling pubmed-98234152023-01-08 High-Discrimination Circular Polarization Detection Based on Dielectric-Metal-Hybrid Chiral Metamirror Integrated Quantum Well Infrared Photodetectors Shen, Jinyong Zhu, Tianyun Zhou, Jing Chu, Zeshi Ren, Xiansong Deng, Jie Dai, Xu Li, Fangzhe Wang, Bo Chen, Xiaoshuang Lu, Wei Sensors (Basel) Communication Circular polarization detection enables a wide range of applications. With the miniaturization of optoelectronic systems, integrated circular polarization detectors with native sensitivity to the spin state of light have become highly sought after. The key issues with this type of device are its low circular polarization extinction ratios (CPERs) and reduced responsivities. Metallic two-dimensional chiral metamaterials have been integrated with detection materials for filterless circular polarization detection. However, the CPERs of such devices are typically below five, and the light absorption in the detection materials is hardly enhanced and is even sometimes reduced. Here, we propose to sandwich multiple quantum wells between a dielectric two-dimensional chiral metamaterial and a metal grating to obtain both a high CPER and a photoresponse enhancement. The dielectric-metal-hybrid chiral metamirror integrated quantum well infrared photodetector (QWIP) exhibits a CPER as high as 100 in the long wave infrared range, exceeding all reported CPERs for integrated circular polarization detectors. The absorption efficiency of this device reaches 54%, which is 17 times higher than that of a standard 45° edge facet coupled device. The circular polarization discrimination is attributed to the interference between the principle-polarization radiation and the cross-polarization radiation of the chiral structure during multiple reflections and the structure-material double polarization selection. The enhanced absorption efficiency is due to the excitation of a surface plasmon polariton wave. The dielectric-metal-hybrid chiral mirror structure is compatible with QWIP focal plane arrays. MDPI 2022-12-24 /pmc/articles/PMC9823415/ /pubmed/36616770 http://dx.doi.org/10.3390/s23010168 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Shen, Jinyong
Zhu, Tianyun
Zhou, Jing
Chu, Zeshi
Ren, Xiansong
Deng, Jie
Dai, Xu
Li, Fangzhe
Wang, Bo
Chen, Xiaoshuang
Lu, Wei
High-Discrimination Circular Polarization Detection Based on Dielectric-Metal-Hybrid Chiral Metamirror Integrated Quantum Well Infrared Photodetectors
title High-Discrimination Circular Polarization Detection Based on Dielectric-Metal-Hybrid Chiral Metamirror Integrated Quantum Well Infrared Photodetectors
title_full High-Discrimination Circular Polarization Detection Based on Dielectric-Metal-Hybrid Chiral Metamirror Integrated Quantum Well Infrared Photodetectors
title_fullStr High-Discrimination Circular Polarization Detection Based on Dielectric-Metal-Hybrid Chiral Metamirror Integrated Quantum Well Infrared Photodetectors
title_full_unstemmed High-Discrimination Circular Polarization Detection Based on Dielectric-Metal-Hybrid Chiral Metamirror Integrated Quantum Well Infrared Photodetectors
title_short High-Discrimination Circular Polarization Detection Based on Dielectric-Metal-Hybrid Chiral Metamirror Integrated Quantum Well Infrared Photodetectors
title_sort high-discrimination circular polarization detection based on dielectric-metal-hybrid chiral metamirror integrated quantum well infrared photodetectors
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9823415/
https://www.ncbi.nlm.nih.gov/pubmed/36616770
http://dx.doi.org/10.3390/s23010168
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