Physics
Scientific paper
Jul 2003
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=2003georl..30npla3l&link_type=abstract
Geophysical Research Letters, Volume 30, Issue 14, pp. PLA 3-1, CiteID 1770, DOI 10.1029/2003GL017183
Physics
17
Planetary Sciences: Impact Phenomena (Includes Cratering), Planetary Sciences: Remote Sensing, Planetary Sciences: Instruments And Techniques, Planetology: Solar System Objects: Mars
Scientific paper
The Mars Odyssey Thermal Emission Imaging System (THEMIS) acquires both visible and thermal infrared images of the Martian surface. This study shows that the daytime infrared images, as well as the visible images, may be utilized successfully for crater population studies. The THEMIS data bridge the resolution gap between higher-resolution Mars Orbiter Camera narrow-angle images and lower-resolution Viking Orbiter images and THEMIS will provide unprecedented global coverage at 100-m resolution by the end of the nominal Mars Odyssey mission. The crater-population data in this work show evidence for the flattening of the mid-sized (~63 m < D < 1km) crater density curve due to erosion and/or deposition and the upturn of the smaller-diameter (<~90 m-diameter) crater curve signaling the hiatus of major crater obliteration in Meridiani Planum about 1-10 Ma.
Christensen Philip R.
Hartmann William K.
Lane Melissa D.
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