HR: 17:00h
AN: P24A-05 INVITED [Abstracts]
TI: A Method for Identifying Mineralogical Signatures in Locales With Large Topography Using
Atmospherically Equalized THEMIS Data
AU: * Anderson, F S
EM: anderson@higp.hawaii.edu
AF: University of Hawaii at Manoa, HIGP, 1680 East-West Road, POST 504, Honolulu, HI 96822
United States
AU: Hamilton, V E
EM: hamilton@higp.hawaii.edu
AF: University of Hawaii at Manoa, HIGP, 1680 East-West Road, POST 504, Honolulu, HI 96822
United States
AB:
We have developed a method for using THEMIS data to study the mineralogy of surfaces that have large elevation changes, such
as the unusual blocky terrain in Melas Chasma, in order to identify locales of mineralogical interest. Surfaces with large
topography are commonly difficult to interpret using THEMIS data alone because atmospheric transmittance typically dominates
the observed radiance. Fortunately, there is a quasi-linear relationship between topography and transmittance, allowing the
quasi-linear effect of transmittance to be characterized and removed, and the mineralogy of surfaces identified. We
illustrate the use of the quasi-linear relationship between elevation and transmittance to create real-time atmospheric
corrections for THEMIS data, demonstrating the technique at the Valles Marineris and globally. Initial results allow us to
identify and mineralogically characterize small outcrops using the high spatial resolution THEMIS data in and around the
Valles Marineris, as well as other regions with large topography on Mars.
DE: 5405 Atmospheres (0343, 1060)
DE: 5464 Remote sensing
DE: 5470 Surface materials and properties
DE: 6225 Mars
SC: Planetary Sciences [P]
MN: Fall Meeting 2005