HR: 0800h
AN: P21A-0197 [Abstracts]
TI: True Color and Chromaticity of the Martian Surface and Sky from Mars Exploration Rover Pancam
Observations
AU: * Savransky, D
EM: ds264@cornell.edu
AF: Cornell University, Dept. of Astronomy, Ithaca, NY 14853-6801
AU: Bell, J F
EM: jfb8@cornell.edu
AF: Cornell University, Dept. of Astronomy, Ithaca, NY 14853-6801
AB:
We calculate the quantitative color of Mars using calibrated data from the Panoramic Cameras (Pancams) on the Mars
Exploration Rovers Spirit and Opportunity. Measured color values allow us to directly compare the color properties of the
rover landing sites with the Mars Pathfinder and Viking Lander sites, to quantify systematic changes in color over time, and
to increase our perceptual understanding of conditions on the Martian surface. By converting calculated color values to the
sRGB color space employed by the majority of modern computer monitors and printers, "true color" representations of the
martian surface and sky are produced. Initial colorimetry values are calculated as CIE tristimulus values (the red, green,
and blue components of human color vision). Calibrated radiance images from the six discrete left eye Pancam narrow band
filters (centered at 753, 673, 601, 535, 482, and 432 nm) are splined to estimate an entire human visible spectrum (360 to
830 nm) for each pixel. Tristimulus values are found by discretely summing over the products of the spectra and 3 CIE color
matching functions, allowing chromaticities (normalized tristimulus values) to be calculated. CIE tristimulus values are
convolved with a transformation matrix to create sRGB tristimulus values which are then fit to a 2.2 gamma curve and scaled
to the range of 0 to 255, 24 bit encoding (8 bits/channel) used by the majority of color displays. An average normalized
surface spectrum is used to approximate chromaticities for images with only partial left eye filter sets. Chromaticity
values of the martian sky and surface at various points throughout the mission generally match those from the Pathfinder and
Viking landing sites. Using the color designation method defined by the ISCC-NBS, the martian sky is "light to moderate
yellowish brown," while average rocks and soil vary between "dark grayish yellowish brown" to "moderate brown". Study of
changes in the colors of the rover calibration targets over the first 200 sols of each mission show that the chromaticities
are trending towards the "dark yellowish brown" portion of the color space, indicating that the calibration targets are
getting covered by martian dust as the mission progresses and allowing a quantitative estimate of dust deposition rates. A
similar study of sky chromaticities throughout the missions shows trends in the color of the sky towards "very light
yellowish brown." Comparing these trends with measured dust opacities throughout the missions would predict that, to the
human eye, the "true" martian sky (with no suspended dust) would appear a very light yellowish brown color - almost directly
opposite from the color of Earth's sky. However, this hypothesis needs to be tested against multiple scattering radiative
transfer models of the martian sky radiance field.
DE: 6061 Remote sensing
DE: 6094 Instruments and techniques
DE: 6225 Mars
SC: Planetary Sciences [P]
MN: 2004 AGU Fall Meeting