DocumentCode
2469411
Title
Modal mineralogy of planetary surfaces from visible and near-infrared spectral data
Author
Poulet, F. ; Ehlmann, B.L. ; Mustard, J.F. ; Vincendon, M. ; Langevin, Y.
Author_Institution
Inst. d´´Astrophys. Spatiale, Univ. Paris Sud, Orsay, France
fYear
2010
fDate
14-16 June 2010
Firstpage
1
Lastpage
4
Abstract
Real planetary surfaces are composed of several to many different minerals and ices. Deconvolving a reflectance spectrum to material abundance in an unambiguous way is difficult, because the spectra are complex nonlinear functions of grain size, abundance, and material opacity. Multiple scattering models can provide approximate solutions to the radiative transfer in a particulate medium. The paper examines the different approaches which deal with the theory of radiative transfer on atmosphereless bodies. We present the relative merits of two scattering theories based on the equivalent slab model: the extensively used Hapke theory and the Shkuratov theory. The performances of the two models for determining mineral abundance in multicomponent mixtures are also evaluated using laboratory data. Finally, one application on real planetary surfaces will be shown.
Keywords
planetary atmospheres; planetary surfaces; radiative transfer; Hapke theory; Shkuratov theory; atmosphereless bodies; complex nonlinear functions; grain size; material abundance; material opacity; modal mineralogy; multiple scattering models; near-infrared spectral data; planetary surfaces; radiative transfer; reflectance spectrum; visible spectral data; Atmospheric modeling; Grain size; Integral equations; Minerals; Reflectivity; Scattering; Surface treatment; Hapke; Shkuratov; imaging spectrometer; modeling; radiative transfer;
fLanguage
English
Publisher
ieee
Conference_Titel
Hyperspectral Image and Signal Processing: Evolution in Remote Sensing (WHISPERS), 2010 2nd Workshop on
Conference_Location
Reykjavik
Print_ISBN
978-1-4244-8906-0
Electronic_ISBN
978-1-4244-8907-7
Type
conf
DOI
10.1109/WHISPERS.2010.5594898
Filename
5594898
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