• Chinese Journal of Lasers
  • Vol. 48, Issue 20, 2010002 (2021)
Kaipeng Li1、2, Yan He1、*, Chunhe Hou1, Jian Ma1, Zhengyang Jiang1, Weibiao Chen1、**, Peng Chen3, Fanghua Liu1、2, Yongqiang Chen1、2, and Shouchuan Guo1、2
Author Affiliations
  • 1Key Laboratory of Space Laser Communication and Detection Technology, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
  • 2Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
  • 3State Key Laboratory of Satellite Ocean Environment Dynamics, Second Institute of Oceanography, Ministry of Natural Resources, Hangzhou, Zhejiang 310012, China
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    DOI: 10.3788/CJL202148.2010002 Cite this Article Set citation alerts
    Kaipeng Li, Yan He, Chunhe Hou, Jian Ma, Zhengyang Jiang, Weibiao Chen, Peng Chen, Fanghua Liu, Yongqiang Chen, Shouchuan Guo. Detection of Chlorophyll Profiles from Coastal to Oceanic Water by Dual-Wavelength Ocean Lidar[J]. Chinese Journal of Lasers, 2021, 48(20): 2010002 Copy Citation Text show less
    References

    [1] Behrenfeld M J, Worthington K, Sherrell R M et al. Controls on tropical Pacific Ocean productivity revealed through nutrient stress diagnostics[J]. Nature, 442, 1025-1028(2006).

    [2] Ryther J H, Yentsch C S. The estimation of phytoplankton production in the ocean from chlorophyll and light data[J]. Limnology and oceanography, 2, 281-286(1957).

    [3] Ryan J P, McManus M A, Sullivan J M. Interacting physical, chemical and biological forcing of phytoplankton thin-layer variability in Monterey Bay, California[J]. Continental Shelf Research, 30, 7-16(2010).

    [4] Churnside J H, Marchbanks R D, Vagle S et al. Stratification, plankton layers, and mixing measured by airborne lidar in the Chukchi and Beaufort seas[J]. Deep Sea Research Part II: Topical Studies in Oceanography, 177, 104742(2020).

    [5] Moore T S, Churnside J H, Sullivan J M et al. Vertical distributions of blooming cyanobacteria populations in a freshwater lake from LIDAR observations[J]. Remote Sensing of Environment, 225, 347-367(2019).

    [6] Liu H, Chen P, Mao Z H et al. Subsurface plankton layers observed from airborne lidar in Sanya Bay, South China Sea[J]. Optics Express, 26, 29134-29147(2018).

    [7] Schulien J A, Behrenfeld M J, Hair J W et al. Vertically resolved phytoplankton carbon and net primary production from a high spectral resolution lidar[J]. Optics Express, 25, 13577-13587(2017).

    [8] Sogandares F M, Fry E S. Absorption spectrum (340--640 nm) of pure water. Ⅰ. Photothermal measurements[J]. Applied Optics, 36, 8699-8709(1997).

    [9] Pope R M, Fry E S. Absorption spectrum (380--700 nm) of pure water. Ⅱ. Integrating cavity measurements[J]. Applied optics, 36, 8710-8723(1997).

    [10] Smith R C, Baker K S. Optical properties of the clearest natural waters (200-800 nm)[J]. Applied Optics, 20, 177-184(1981).

    [11] Morel A. Light and marine photosynthesis: a spectral model with geochemical and climatological implications[J]. Progress in Oceanography, 26, 263-306(1991).

    [12] Roesler C S, Perry M J, Carder K L. Modeling in situ phytoplankton absorption from total absorption spectra in productive inland marine waters[J]. Limnology and Oceanography, 34, 1510-1523(1989).

    [13] Bricaud A, Morel A, Prieur L. Absorption by dissolved organic matter of the sea (yellow substance) in the UV and visible domains[J]. Limnology and oceanography, 26, 43-53(1981).

    [14] Li K P, He Y, Ma J et al. A dual-wavelength ocean lidar for vertical profiling of oceanic backscatter and attenuation[J]. Remote Sensing, 12, 2844(2020).

    [15] Gray D J, Anderson J, Nelson J et al. Using a multiwavelength LiDAR for improved remote sensing of natural waters[J]. Applied Optics, 54, F232-F242(2015).

    [16] Burton S P, Ferrare R A, Hostetler C A et al. Aerosol classification using airborne high spectral resolution lidar measurements: methodology and examples[J]. Atmospheric Measurement Techniques, 5, 73-98(2012).

    [17] Sasano Y, Browell E V. Light scattering characteristics of various aerosol types derived from multiple wavelength lidar observations[J]. Applied Optics, 28, 1670-1679(1989).

    [18] Ma J, Lu T T, He Y et al. Compact dual-wavelength blue-green laser for airborne ocean detection lidar[J]. Applied Optics, 59, C87-C91(2020).

    [19] Amante C, Eakins B W. ETOPO1 arc-minute global relief model: procedures, data sources and analysis[EB/OL]. (2021-01-12)[2021-02-25]. http://www.ngdc.noaa.gov/mgg/global/global.html

    [20] Acharya Y B, Sharma S, Chandra H. Signal induced noise in PMT detection of lidar signals[J]. Measurement, 35, 269-276(2004).

    [21] Zhao Y. Signal-induced fluorescence in photomultipliers in differential absorption lidar systems[J]. Applied Optics, 38, 4639-4648(1999).

    [22] Concannon B M, Contarino V M, Allocca D M et al. Characterization of signal-induced artifacts in photomultiplier tubes for underwater lidar applications[J]. Proceedings of SPIE, 3761, 167-173(1999).

    [23] Donovan D P, Whiteway J A, Carswell A I. Correction for nonlinear photon-counting effects in lidar systems[J]. Applied Optics, 32, 6742-6753(1993).

    [24] Churnside J H, Marchbanks R D. Inversion of oceanographic profiling lidars by a perturbation to a linear regression[J]. Applied Optics, 56, 5228-5233(2017).

    [25] Klett J D. Stable analytical inversion solution for processing lidar returns[J]. Applied Optics, 20, 211-220(1981).

    [26] Chen P, Pan D L. Ocean optical profiling in South China sea using airborne LiDAR[J]. Remote Sensing, 11, 1826(2019).

    [27] Gordon H R, Morel A Y. Remote assessment of ocean color for interpretation of satellite visible imagery: a review[M](1983).

    [28] Morel A, Maritorena S. Bio-optical properties of oceanic waters: a reappraisal[J]. Journal of Geophysical Research: Oceans, 106, 7163-7180(2001).

    [29] Gordon H R. Interpretation of airborne oceanic lidar: effects of multiple scattering[J]. Applied Optics, 21, 2996-3001(1982).

    Kaipeng Li, Yan He, Chunhe Hou, Jian Ma, Zhengyang Jiang, Weibiao Chen, Peng Chen, Fanghua Liu, Yongqiang Chen, Shouchuan Guo. Detection of Chlorophyll Profiles from Coastal to Oceanic Water by Dual-Wavelength Ocean Lidar[J]. Chinese Journal of Lasers, 2021, 48(20): 2010002
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