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The tectonics of Titan: Global structural mapping from Cassini RADAR

May 15, 2016

The Cassini RADAR mapper has imaged elevated mountain ridge belts on Titan with a linear-to-arcuate morphology indicative of a tectonic origin. Systematic geomorphologic mapping of the ridges in Synthetic Aperture RADAR (SAR) images reveals that the orientation of ridges is globally E–W and the ridges are more common near the equator than the poles. Comparison with a global topographic map reveals the equatorial ridges are found to lie preferentially at higher-than-average elevations. We conclude the most reasonable formation scenario for Titan’s ridges is that contractional tectonism built the ridges and thickened the icy lithosphere near the equator, causing regional uplift. The combination of global and regional tectonic events, likely contractional in nature, followed by erosion, aeolian activity, and enhanced sedimentation at mid-to-high latitudes, would have led to regional infilling and perhaps covering of some mountain features, thus shaping Titan’s tectonic landforms and surface morphology into what we see today.

Publication Year 2016
Title The tectonics of Titan: Global structural mapping from Cassini RADAR
DOI 10.1016/j.icarus.2015.11.021
Authors Zac Yung-Chun Liu, Jani Radebaugh, Ron A. Harris, Eric H. Christiansen, Catherine D. Neish, Randolph L. Kirk, Ralph D. Lorenz
Publication Type Article
Publication Subtype Journal Article
Series Title Icarus
Index ID 70191098
Record Source USGS Publications Warehouse
USGS Organization Astrogeology Science Center