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Shipborne oceanic high-spectral-resolution lidar for accurate estimation of seawater depth-resolved optical properties

Lidar techniques present a distinctive ability to resolve vertical structure of optical properties within the upper water column at both day- and night-time. However, accuracy challenges remain for existing lidar instruments due to the ill-posed nature of elastic backscatter lidar retrievals and mul...

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Autores principales: Zhou, Yudi, Chen, Yang, Zhao, Hongkai, Jamet, Cédric, Dionisi, Davide, Chami, Malik, Di Girolamo, Paolo, Churnside, James H., Malinka, Aleksey, Zhao, Huade, Qiu, Dajun, Cui, Tingwei, Liu, Qun, Chen, Yatong, Phongphattarawat, Sornsiri, Wang, Nanchao, Chen, Sijie, Chen, Peng, Yao, Ziwei, Le, Chengfeng, Tao, Yuting, Xu, Peituo, Wang, Xiaobin, Wang, Binyu, Chen, Feitong, Ye, Chuang, Zhang, Kai, Liu, Chong, Liu, Dong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9440025/
https://www.ncbi.nlm.nih.gov/pubmed/36055999
http://dx.doi.org/10.1038/s41377-022-00951-0
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author Zhou, Yudi
Chen, Yang
Zhao, Hongkai
Jamet, Cédric
Dionisi, Davide
Chami, Malik
Di Girolamo, Paolo
Churnside, James H.
Malinka, Aleksey
Zhao, Huade
Qiu, Dajun
Cui, Tingwei
Liu, Qun
Chen, Yatong
Phongphattarawat, Sornsiri
Wang, Nanchao
Chen, Sijie
Chen, Peng
Yao, Ziwei
Le, Chengfeng
Tao, Yuting
Xu, Peituo
Wang, Xiaobin
Wang, Binyu
Chen, Feitong
Ye, Chuang
Zhang, Kai
Liu, Chong
Liu, Dong
author_facet Zhou, Yudi
Chen, Yang
Zhao, Hongkai
Jamet, Cédric
Dionisi, Davide
Chami, Malik
Di Girolamo, Paolo
Churnside, James H.
Malinka, Aleksey
Zhao, Huade
Qiu, Dajun
Cui, Tingwei
Liu, Qun
Chen, Yatong
Phongphattarawat, Sornsiri
Wang, Nanchao
Chen, Sijie
Chen, Peng
Yao, Ziwei
Le, Chengfeng
Tao, Yuting
Xu, Peituo
Wang, Xiaobin
Wang, Binyu
Chen, Feitong
Ye, Chuang
Zhang, Kai
Liu, Chong
Liu, Dong
author_sort Zhou, Yudi
collection PubMed
description Lidar techniques present a distinctive ability to resolve vertical structure of optical properties within the upper water column at both day- and night-time. However, accuracy challenges remain for existing lidar instruments due to the ill-posed nature of elastic backscatter lidar retrievals and multiple scattering. Here we demonstrate the high performance of, to the best of our knowledge, the first shipborne oceanic high-spectral-resolution lidar (HSRL) and illustrate a multiple scattering correction algorithm to rigorously address the above challenges in estimating the depth-resolved diffuse attenuation coefficient K(d) and the particulate backscattering coefficient b(bp) at 532 nm. HSRL data were collected during day- and night-time within the coastal areas of East China Sea and South China Sea, which are connected by the Taiwan Strait. Results include vertical profiles from open ocean waters to moderate turbid waters and first lidar continuous observation of diel vertical distribution of thin layers at a fixed station. The root-mean-square relative differences between the HSRL and coincident in situ measurements are 5.6% and 9.1% for K(d) and b(bp), respectively, corresponding to an improvement of 2.7–13.5 and 4.9–44.1 times, respectively, with respect to elastic backscatter lidar methods. Shipborne oceanic HSRLs with high performance are expected to be of paramount importance for the construction of 3D map of ocean ecosystem.
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spelling pubmed-94400252022-09-04 Shipborne oceanic high-spectral-resolution lidar for accurate estimation of seawater depth-resolved optical properties Zhou, Yudi Chen, Yang Zhao, Hongkai Jamet, Cédric Dionisi, Davide Chami, Malik Di Girolamo, Paolo Churnside, James H. Malinka, Aleksey Zhao, Huade Qiu, Dajun Cui, Tingwei Liu, Qun Chen, Yatong Phongphattarawat, Sornsiri Wang, Nanchao Chen, Sijie Chen, Peng Yao, Ziwei Le, Chengfeng Tao, Yuting Xu, Peituo Wang, Xiaobin Wang, Binyu Chen, Feitong Ye, Chuang Zhang, Kai Liu, Chong Liu, Dong Light Sci Appl Article Lidar techniques present a distinctive ability to resolve vertical structure of optical properties within the upper water column at both day- and night-time. However, accuracy challenges remain for existing lidar instruments due to the ill-posed nature of elastic backscatter lidar retrievals and multiple scattering. Here we demonstrate the high performance of, to the best of our knowledge, the first shipborne oceanic high-spectral-resolution lidar (HSRL) and illustrate a multiple scattering correction algorithm to rigorously address the above challenges in estimating the depth-resolved diffuse attenuation coefficient K(d) and the particulate backscattering coefficient b(bp) at 532 nm. HSRL data were collected during day- and night-time within the coastal areas of East China Sea and South China Sea, which are connected by the Taiwan Strait. Results include vertical profiles from open ocean waters to moderate turbid waters and first lidar continuous observation of diel vertical distribution of thin layers at a fixed station. The root-mean-square relative differences between the HSRL and coincident in situ measurements are 5.6% and 9.1% for K(d) and b(bp), respectively, corresponding to an improvement of 2.7–13.5 and 4.9–44.1 times, respectively, with respect to elastic backscatter lidar methods. Shipborne oceanic HSRLs with high performance are expected to be of paramount importance for the construction of 3D map of ocean ecosystem. Nature Publishing Group UK 2022-09-02 /pmc/articles/PMC9440025/ /pubmed/36055999 http://dx.doi.org/10.1038/s41377-022-00951-0 Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Zhou, Yudi
Chen, Yang
Zhao, Hongkai
Jamet, Cédric
Dionisi, Davide
Chami, Malik
Di Girolamo, Paolo
Churnside, James H.
Malinka, Aleksey
Zhao, Huade
Qiu, Dajun
Cui, Tingwei
Liu, Qun
Chen, Yatong
Phongphattarawat, Sornsiri
Wang, Nanchao
Chen, Sijie
Chen, Peng
Yao, Ziwei
Le, Chengfeng
Tao, Yuting
Xu, Peituo
Wang, Xiaobin
Wang, Binyu
Chen, Feitong
Ye, Chuang
Zhang, Kai
Liu, Chong
Liu, Dong
Shipborne oceanic high-spectral-resolution lidar for accurate estimation of seawater depth-resolved optical properties
title Shipborne oceanic high-spectral-resolution lidar for accurate estimation of seawater depth-resolved optical properties
title_full Shipborne oceanic high-spectral-resolution lidar for accurate estimation of seawater depth-resolved optical properties
title_fullStr Shipborne oceanic high-spectral-resolution lidar for accurate estimation of seawater depth-resolved optical properties
title_full_unstemmed Shipborne oceanic high-spectral-resolution lidar for accurate estimation of seawater depth-resolved optical properties
title_short Shipborne oceanic high-spectral-resolution lidar for accurate estimation of seawater depth-resolved optical properties
title_sort shipborne oceanic high-spectral-resolution lidar for accurate estimation of seawater depth-resolved optical properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9440025/
https://www.ncbi.nlm.nih.gov/pubmed/36055999
http://dx.doi.org/10.1038/s41377-022-00951-0
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