1 Churnside J H, Mc Carty B J, Lu X. Subsurface ocean signals from an orbiting polarization lidar. Remote Sensing, 2013, 5(7): 3457-3475.
2
Siegel D A, Maritorena S, Nelson N B, et al. Global distribution and dynamics of colored dissolved and
detrital organic materials [J]. Journal of Geophysical Research Oceans, 2002, 107(C12): 21-1-21-14.
3
Mishchenko M I, Travis L D, Lacis A A. Multiple Scattering of Light by Particles: Radiative Transfer
and Coherent Backscattering [M]. Cambridge:Cambridge University Press, 2006.
4
Mishchenko M L, Travis L D, Lacis A A. Multiple Scattering of Light by Particles[C]. Multiple Scattering of Light by Particles, 2006.
5
Churnside J H, Tatarskii V V, Wilson J J. Oceanographic lidar attenuation coefficients and signal
fluctuations measured from a ship in the Southern California Bight [J]. Applied optics, 1998, 37(15): 3105-3112.
6
Vaughan M A, Young S A, Winker D M, et al. Fully automated analysis of space-based lidar data:
An overview of the CALIPSO retrieval algorithms and data products[C]. Remote Sensing. International Society
for Optics and Photonics, 2004: 16-30.
7
Sun Yuchen, Wu Dong. Comparison of day and night sea surface wind speeed detection using CALIPSO lidar
measurements [J]. Chinese journal of quantum electronics, 2013, 30(1): 29-35.
孙雨辰, 吴东. 星载激光雷达探测海面风速昼夜差异研究[J]. 量子电子学报, 2013, 30(1):29-35.
8
Wu Dong, Zhang Xiaoxue, Yan Fengqi. Sea surface wind speed detection by using the data of CALIOP lidar [J].
Acta Optica Sinica, 2012, 32(8): 243-249(in Chinese).
吴东, 张小雪, 阎逢旗,等. 基于星载激光雷达数据的海面风速探测[J]. 光学学报, 2012, 32(8):243-249.
9
Zhang Xiaoxue, Research of the accuracy improvement of sea surface wind speed estimationfrom space-based lidar
measurements[D]. Qingdao: Master Thesis of Ocean university of China, 2012(in Chinese).
张小雪. 提高星载激光雷达海面风速探测精度的研[D]. 青岛:中国海洋大学硕士论文, 2012.
10
Yan Huaibin. Retrieval of chlorophyll concetrations in the ocean by using CALIPSO lidar signal below
the ocean surface[D]. Qingdao: Master Thesis of Ocean university of China, 2014(in Chinese).
晏怀斌. CALIPSO激光雷达水下信号反演大洋叶绿素浓度的探索[D]. 青岛:中国海洋大学硕士论文, 2014.
11
Wang Jianhua. Retrieval of Air-Sea CO$_2$ Transfer Velocity Based on CALIPSO Lidar Production[D],
Qingdao: Master Thesis of Ocean university of China, 2012(in Chinese).
王建华. 基于星载激光雷达数据的海气界面CO$_2$传输速率反演[D]. 青岛:中国海洋大学硕士论文, 2012.
12
Lu X, Hu Y, Trepte C, et al. Ocean subsurface studies with the CALIPSO spacebornelidar [J].
Journal of Geophysical Research Oceans, 2014, 119(7):4305-4317.
13
Hu Y, Stamnes K, Vaughan M, et al. Sea surface wind speed estimation from space-based lidar measurements [J].
Atmospheric Chemistry & Physics Discussions, 2008, 8(1):3593-3601.
14
Shi W, Wang M. Three‐dimensional observations from MODIS and CALIPSO for ocean responses to cyclone
Nargis in the Gulf of Martaban [J]. Geophysical Research Letters, 2008, 35(35):99-100.
15
Behrenfeld M J, Hu Y, Hostetler C A, et al. Space‐based lidar measurements of global ocean carbon stocks [J].
Geophysical Research Letters, 2013, 40(16):4355-4360.
16
Lu X, Hu Y, Pelon J, et al. Retrieval of ocean subsurface particulate backscattering coefficient
from space-borne CALIOP lidar measurements [J]. Optics Express, 2016, 24(25):29001.
17
Hu Y, Behrenfeld M, Hostetler C, et al. Ocean lidar measurements of beam attenuation and a
roadmap to accurate phytoplankton biomass estimates[C]//New York City, USA: IRLC 27th
International Laser Radar Conference. 2016.
18
Voss K J, Fry E S. Measurement of the Mueller matrix for ocean water [J]. Applied Optics, 1984, 23(23): 4427-39.
vspace*{0.1cm
19
Kokhanovsky A A. Parameterization of the Mueller matrix of oceanic waters [J].
Journal of Geophysical Research Oceans, 2003, 108(C6).
20
Churnside J H. Polarization effects on oceanographic lidar [J]. Optics Express, 2008, 16(2): 1196-207.
vspace*{0.1cm
21
Li J, Hu Y, Huang J, et al. A new method for retrieval of the extinction coefficient of water clouds by
using the tail of the CALIOP signal [J]. Atmospheric Chemistry & Physics Discussions, 2010, 10(11):2903-2916.
22
Lu X, Hu Y, Liu Z, et al. CALIOP receiver transient response study[J]. Proceedings of SPIE-the Internafional Society for
Optical Engineering, 2013, 8873: 887316.
23
Zhang Qinghua, WuDong, YuSuzhen. Transient rseponse of CALIOP 532 nm photoelectric receiving systems [J].
Journal of Atmospheric and Environmental Optics, 2018, 13(1): 20-29(in Chinese).张清华,吴东,于素真. CALIOP 532 nm通道光电接收系统时响应研究[J],大气与环境光学学报, 2018, 13(1): 20-29.
24
Kildal H, Byer R L. Comparison of laser methods for the remote detection of atmospheric pollutants [J].
Proceedings of the IEEE, 1971, 59(12): 1644-1663.
25
Kirk J T O. Light and Photosynthesis in Aquatic Ecosystems [M]. Cambridge University Press, 1983. |