DocumentCode :
2142843
Title :
The enhancement of lidar backscattering by horizontally oriented ice crystal plates in cirrus clouds
Author :
Yang, P. ; Hu, Y.X. ; Zhao, J. ; Winker, D.M. ; Hstetler, C.A. ; Baum, B.A. ; Tsay, S.-C. ; Gao, B.C. ; Mishchenko, M.I.
Author_Institution :
Dept. of Atmos. Sci., Texas A&M Univ., College Station, TX, USA
Volume :
6
fYear :
2002
fDate :
24-28 June 2002
Firstpage :
3608
Abstract :
The backscattering of radiation at 0.532 and 1.064 μm wavelengths by quasi-horizontally oriented hexagonal ice plates is investigated. The geometric optics ray tracing method is not applicable to the scattering problem associated with oriented ice crystals (in particular, in backscattering direction) because of the singularity of the ray-tracing technique. In the present study, we solve the scattered field of quasi-horizontally oriented ice plates using an approach based on electromagnetic wave theory. The effect of side faces of a plate on the internal field inside the particle is ignored. This is a reasonable approximation under the condition that the ratio of particle diameter to its length is large or the tilt of the particle symmetric axis from the zenith is small. Preliminary results show very strong resonant oscillations of backscattering cross section versus size parameter. The bulk backscattering intensity has been calculated by including size distribution and a random tilt of particle symmetric axis within a small angular region (2°).
Keywords :
backscatter; clouds; ice; optical radar; tropospheric electromagnetic wave propagation; 0.532 micron; 1.064 micron; EM wave theory; backscattering cross section; bulk backscattering intensity; cirrus clouds; horizontally oriented hexagonal ice crystal plates; lidar backscattering enhancement; particle symmetry axis; plate side faces; quasi-horizontally oriented ice plates; radiation backscattering; resonant oscillations; scattered field; scattering problem; size distribution; size parameter; Backscatter; Clouds; Crystals; Electromagnetic scattering; Geometrical optics; Ice; Laser radar; Optical scattering; Particle scattering; Ray tracing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Geoscience and Remote Sensing Symposium, 2002. IGARSS '02. 2002 IEEE International
Print_ISBN :
0-7803-7536-X
Type :
conf
DOI :
10.1109/IGARSS.2002.1027265
Filename :
1027265
Link To Document :
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