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Gold Enhanced Graphene-Based Photodetector on Optical Fiber with Ultrasensitivity over Near-Infrared Bands

Graphene has been widely used in photodetectors; however its photoresponsivity is limited due to the intrinsic low absorption of graphene. To enhance the graphene absorption, a waveguide structure with an extended interaction length and plasmonic resonance with light field enhancement are often empl...

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Autores principales: Zhu, Wenguo, Yang, Songqing, Zheng, Huadan, Zhan, Yuansong, Li, Dongquan, Cen, Guobiao, Tang, Jieyuan, Lu, Huihui, Zhang, Jun, Zhao, Zhijuan, Mai, Wenjie, Xie, Weiguang, Fang, Wenxiao, Lu, Guoguang, Yu, Jianhui, Chen, Zhe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8746754/
https://www.ncbi.nlm.nih.gov/pubmed/35010073
http://dx.doi.org/10.3390/nano12010124
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author Zhu, Wenguo
Yang, Songqing
Zheng, Huadan
Zhan, Yuansong
Li, Dongquan
Cen, Guobiao
Tang, Jieyuan
Lu, Huihui
Zhang, Jun
Zhao, Zhijuan
Mai, Wenjie
Xie, Weiguang
Fang, Wenxiao
Lu, Guoguang
Yu, Jianhui
Chen, Zhe
author_facet Zhu, Wenguo
Yang, Songqing
Zheng, Huadan
Zhan, Yuansong
Li, Dongquan
Cen, Guobiao
Tang, Jieyuan
Lu, Huihui
Zhang, Jun
Zhao, Zhijuan
Mai, Wenjie
Xie, Weiguang
Fang, Wenxiao
Lu, Guoguang
Yu, Jianhui
Chen, Zhe
author_sort Zhu, Wenguo
collection PubMed
description Graphene has been widely used in photodetectors; however its photoresponsivity is limited due to the intrinsic low absorption of graphene. To enhance the graphene absorption, a waveguide structure with an extended interaction length and plasmonic resonance with light field enhancement are often employed. However, the operation bandwidth is narrowed when this happens. Here, a novel graphene-based all-fiber photodetector (AFPD) was demonstrated with ultrahigh responsivity over a full near-infrared band. The AFPD benefits from the gold-enhanced absorption when an interdigitated Au electrode is fabricated onto a Graphene-PMMA film covered over a side-polished fiber (SFP). Interestingly, the AFPD shows a photoresponsivity of >1 × 10(4) A/W and an external quantum efficiency of >4.6 × 10(6)% over a broadband region of 980–1620 nm. The proposed device provides a simple, low-cost, efficient, and robust way to detect optical fiber signals with intriguing capabilities in terms of distributed photodetection and on-line power monitoring, which is highly desirable for a fiber-optic communication system.
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spelling pubmed-87467542022-01-11 Gold Enhanced Graphene-Based Photodetector on Optical Fiber with Ultrasensitivity over Near-Infrared Bands Zhu, Wenguo Yang, Songqing Zheng, Huadan Zhan, Yuansong Li, Dongquan Cen, Guobiao Tang, Jieyuan Lu, Huihui Zhang, Jun Zhao, Zhijuan Mai, Wenjie Xie, Weiguang Fang, Wenxiao Lu, Guoguang Yu, Jianhui Chen, Zhe Nanomaterials (Basel) Article Graphene has been widely used in photodetectors; however its photoresponsivity is limited due to the intrinsic low absorption of graphene. To enhance the graphene absorption, a waveguide structure with an extended interaction length and plasmonic resonance with light field enhancement are often employed. However, the operation bandwidth is narrowed when this happens. Here, a novel graphene-based all-fiber photodetector (AFPD) was demonstrated with ultrahigh responsivity over a full near-infrared band. The AFPD benefits from the gold-enhanced absorption when an interdigitated Au electrode is fabricated onto a Graphene-PMMA film covered over a side-polished fiber (SFP). Interestingly, the AFPD shows a photoresponsivity of >1 × 10(4) A/W and an external quantum efficiency of >4.6 × 10(6)% over a broadband region of 980–1620 nm. The proposed device provides a simple, low-cost, efficient, and robust way to detect optical fiber signals with intriguing capabilities in terms of distributed photodetection and on-line power monitoring, which is highly desirable for a fiber-optic communication system. MDPI 2021-12-30 /pmc/articles/PMC8746754/ /pubmed/35010073 http://dx.doi.org/10.3390/nano12010124 Text en © 2021 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 Article
Zhu, Wenguo
Yang, Songqing
Zheng, Huadan
Zhan, Yuansong
Li, Dongquan
Cen, Guobiao
Tang, Jieyuan
Lu, Huihui
Zhang, Jun
Zhao, Zhijuan
Mai, Wenjie
Xie, Weiguang
Fang, Wenxiao
Lu, Guoguang
Yu, Jianhui
Chen, Zhe
Gold Enhanced Graphene-Based Photodetector on Optical Fiber with Ultrasensitivity over Near-Infrared Bands
title Gold Enhanced Graphene-Based Photodetector on Optical Fiber with Ultrasensitivity over Near-Infrared Bands
title_full Gold Enhanced Graphene-Based Photodetector on Optical Fiber with Ultrasensitivity over Near-Infrared Bands
title_fullStr Gold Enhanced Graphene-Based Photodetector on Optical Fiber with Ultrasensitivity over Near-Infrared Bands
title_full_unstemmed Gold Enhanced Graphene-Based Photodetector on Optical Fiber with Ultrasensitivity over Near-Infrared Bands
title_short Gold Enhanced Graphene-Based Photodetector on Optical Fiber with Ultrasensitivity over Near-Infrared Bands
title_sort gold enhanced graphene-based photodetector on optical fiber with ultrasensitivity over near-infrared bands
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8746754/
https://www.ncbi.nlm.nih.gov/pubmed/35010073
http://dx.doi.org/10.3390/nano12010124
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