A new stereo topographic map of Io: Implications for geology from global to local scales

We use Voyager and Galileo stereo pairs to construct the most complete stereo digital elevation model (DEM) of Io assembled to date, controlled using Galileo limb profiles. Given the difficulty of applying these two techniques to Io due to its anomalous surface albedo properties, we have experimente...

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Veröffentlicht in:Journal of geophysical research. Planets 2014-06, Vol.119 (6), p.1276-1301
Hauptverfasser: White, Oliver L., Schenk, Paul M., Nimmo, Francis, Hoogenboom, Trudi
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Sprache:eng
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Zusammenfassung:We use Voyager and Galileo stereo pairs to construct the most complete stereo digital elevation model (DEM) of Io assembled to date, controlled using Galileo limb profiles. Given the difficulty of applying these two techniques to Io due to its anomalous surface albedo properties, we have experimented extensively with the relevant procedures in order to generate what we consider to be the most reliable DEMs. Our final stereo DEM covers ~75% of the globe, and we have identified a partial system of longitudinally arranged alternating basins and swells that correlates well to the distribution of mountain and volcano concentrations. We consider the correlation of swells to volcano concentrations and basins to mountain concentrations, to imply a heat flow distribution across Io that is consistent with the asthenospheric tidal heating model of Tackley et al. (2001). The stereo DEM reveals topographic signatures of regional‐scale features including Loki Patera, Ra Patera, and the Tvashtar Paterae complex, in addition to previously unrecognized features including an ~1000 km diameter depression and a >2000 km long topographic arc comprising mountainous and layered plains material. Key Points A new DEM of Io has been constructed using Voyager and Galileo stereo pairs Global‐scale undulations contain implications for Io's heating mechanism Topography of recognized and undetected regional‐scale features is revealed
ISSN:2169-9097
2169-9100
DOI:10.1002/2013JE004591