Inversion with regularization for the retrieval of tropospheric aerosol parameters from multiwavelength lidar sounding

被引:246
作者
Veselovskii, I [1 ]
Kolgotin, A
Griaznov, V
Müller, D
Wandinger, U
Whiteman, DN
机构
[1] Inst Gen Phys, Phys Instrumentat Ctr, Troitsk 142190, Moscow Region, Russia
[2] Inst Tropospher Res, D-04318 Leipzig, Germany
[3] NASA, Goddard Space Flight Ctr, Greenbelt, MD 20771 USA
关键词
D O I
10.1364/AO.41.003685
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
We present an inversion algorithm for the retrieval of particle size distribution parameters, i.e., mean (effective) radius, number, surface area, and volume concentration, and complex refractive index from multiwavelength lidar data. In contrast to the classical Tikhonov method, which accepts only that solution for which the discrepancy reaches its global minimum. in our algorithm we perform the averaging of solutions in the vicinity of this minimum, This averaging stabilizes the underlying ill-posed inverse problem, particularly with respect to the retrieval of number concentration. Results show that, for typical tropospheric particles and 10% error in the optical data, the mean radius could be retrieved to better than 20% from a lidar on the basis of a Nd:YAG laser, which provides a combination of backscatter coefficients at 355, 532, and 1064 nm and extinction coefficients at 355 and 532 nm. The accuracy is improved if the lidar is also equipped with a hydrogen Raman shifter. In this case two additional backscatter coefficients at 416 and 683 nm are available. The combination of two extinction coefficients and five backscatter coefficients then allows one to retrieve not only averaged aerosol parameters but also the size distribution function. There was acceptable agreement between physical particle properties obtained from the evaluation of multiwavelength lidar data taken during the Lindenberg Aerosol Characterization Experiment in 1998 (LACE 98) and in situ data, which were taken aboard aircraft. (C) 2002 Optical Society of America.
引用
收藏
页码:3685 / 3699
页数:15
相关论文
共 51 条
[1]  
Althausen D, 2000, J ATMOS OCEAN TECH, V17, P1469, DOI 10.1175/1520-0426(2000)017<1469:SWCAL>2.0.CO
[2]  
2
[3]  
[Anonymous], 2001, Third Assessment Report
[4]   COMBINED RAMAN ELASTIC-BACKSCATTER LIDAR FOR VERTICAL PROFILING OF MOISTURE, AEROSOL EXTINCTION, BACKSCATTER, AND LIDAR RATIO [J].
ANSMANN, A ;
RIEBESELL, M ;
WANDINGER, U ;
WEITKAMP, C ;
VOSS, E ;
LAHMANN, W ;
MICHAELIS, W .
APPLIED PHYSICS B-PHOTOPHYSICS AND LASER CHEMISTRY, 1992, 55 (01) :18-28
[5]   MEASUREMENT OF ATMOSPHERIC AEROSOL EXTINCTION PROFILES WITH A RAMAN LIDAR [J].
ANSMANN, A ;
RIEBESELL, M ;
WEITKAMP, C .
OPTICS LETTERS, 1990, 15 (13) :746-748
[6]   INDEPENDENT MEASUREMENT OF EXTINCTION AND BACKSCATTER PROFILES IN CIRRUS CLOUDS BY USING A COMBINED RAMAN ELASTIC-BACKSCATTER LIDAR [J].
ANSMANN, A ;
WANDINGER, U ;
RIEBESELL, M ;
WEITKAMP, C ;
MICHAELIS, W .
APPLIED OPTICS, 1992, 31 (33) :7113-7131
[7]   Vertical profiling of the Indian aerosol plume with six-wavelength lidar during INDOEX:: A first case study [J].
Ansmann, A ;
Althausen, D ;
Wandinger, U ;
Franke, K ;
Müller, D ;
Wagner, F ;
Heintzenberg, J .
GEOPHYSICAL RESEARCH LETTERS, 2000, 27 (07) :963-966
[8]  
ANSMANN A, 1998, IN PRESS J GEOPHYS R
[9]   MULTIWAVELENGTH LIDAR MEASUREMENTS OF STRATOSPHERIC AEROSOLS ABOVE SPITSBERGEN DURING WINTER 1992 93 [J].
BEYERLE, G ;
NEUBER, R ;
SCHREMS, O ;
WITTROCK, F ;
KNUDSEN, B .
GEOPHYSICAL RESEARCH LETTERS, 1994, 21 (01) :57-60
[10]  
Böckmann C, 2001, APPL OPTICS, V40, P1329, DOI 10.1364/AO.40.001329