Ancient ocean on Mars supported by global distribution of deltas and valleys (original) (raw)
References
Parker, T. J., Saunders, R. S. & Schneeberger, D. M. Transitional morphology in the west Deuteronilus Mensae region of Mars: Implications for modification of the lowland/upland boundary. Icarus82, 111–145 (1989). Article Google Scholar
Baker, V. R., Strom, R. G., Gulick, V. C., Kargel, J. S. & Komatsu, G. Ancient oceans, ice sheets and the hydrological cycle on Mars. Nature352, 589–594 (1991). Article Google Scholar
Head, J. W. et al. Possible ancient oceans on Mars: Evidence from Mars orbiter laser altimeter data. Science286, 2134–2137 (1999). Article Google Scholar
Clifford, S. M. & Parker, T. J. The evolution of the martian hydrosphere: Implications for the fate of a primordial ocean and the current state of the northern plains. Icarus154, 40–79 (2001). Article Google Scholar
Fairén, A. G. et al. Episodic flood inundations of the northern plains of Mars. Icarus165, 53–67 (2003). Article Google Scholar
Malin, M. & Edgett, K. Oceans or seas in the martian northern lowlands: High resolution imaging tests of proposed coastlines. Geophys. Res. Lett.26, 3049–3052 (1999). Article Google Scholar
Ghatan, G. J. & Zimbelman, J. R. Paucity of candidate coastal constructional landforms along proposed shorelines on Mars: Implications for a northern lowlands-filling ocean. Icarus185, 171–196 (2006). Article Google Scholar
Hynek, B. M., Beach, M. & Hoke, M. R. T. Updated global map of martian valley networks and implications for climate and hydrologic processes. J. Geophys. Res. 10.1029/2009JE003548 (2010, in the press).
Stanley, D. G. & Warne, G. W. Worldwide initiation of Holocene marine deltas by deceleration of sea-level rise. Science265, 228–231 (1994). Article Google Scholar
Malin, M. C. & Edgett, K. S. Evidence for persistent flow and aqueous sedimentation on Mars. Science302, 1931–1934 (2003). Article Google Scholar
Irwin, R. P. III, Howard, A. D., Craddock, R. A. & Moore, J. M. An intense terminal epoch of widespread fluvial activity on early Mars: 2. Increased runoff and paleolake development. J. Geophys. Res.110, E12S15 (2005). Article Google Scholar
Di Achille, G., Hynek, B. M. & Searls, M. L. Positive identification of lake strandlines in Shalbatana Vallis, Mars. Geophys. Res. Lett.36, L14201 (2009). Article Google Scholar
Smith, D. E. et al. Mars Orbiter Laser Altimeter: Experiment summary after the first year of global mapping of Mars. J. Geophys. Res.106, 23689–23722 (2001). Article Google Scholar
Phillips, R. J. et al. Ancient geodynamics and global-scale hydrology on Mars. Science291, 2587–2591 (2001). Article Google Scholar
Hartmann, W. K. Martian cratering 8: Isochron refinement and the chronology of Mars. Icarus174, 294–320 (2005). Article Google Scholar
Howard, A. D., Moore, J. M. & Irwin, R. P. III An intense terminal epoch of widespread fluvial activity on early Mars: 1. Valley network incision and associated deposits. J. Geophys. Res.110, E12S14 (2005). Article Google Scholar
Fassett, C. I. & Head, J. W. The timing of martian valley network activity: Constraints from buffered crater counting. Icarus195, 61–89 (2008). Article Google Scholar
Fairén, A. G. A cold and wet Mars. Icarus 10.1016/j.icarus.2010.01.006 (2010, in the press). Article Google Scholar
Dohm, J. M. et al. Possible ancient giant basin and related water enrichment in the Arabia Terra province, Mars. Icarus190, 74–92 (2007). Article Google Scholar
Fassett, C. I. & Head, J. W. Valley network-fed, open-basin lakes on Mars: Distribution and implications for Noachian surface and subsurface hydrology. Icarus198, 37–56 (2008). Article Google Scholar
Rossi, A. P. et al. Large-scale spring deposits on Mars? J. Geophys. Res.113, E08016 (2008). Article Google Scholar
Malin, M. C. & Edgett, K. S. Sedimentary rocks on Mars. Science290, 1927–1937 (2000). Article Google Scholar
Moore, J. M. & Wilhelms, D. E. Hellas as a possible site of ancient ice-covered lakes on Mars. Icarus154, 258–276 (2001). Article Google Scholar
Wilson, S. A., Howard, A. D., Moore, J. M. & Grant, J. A. Geomorphic and stratigraphic analysis of Crater Terby and layered deposits north of Hellas basin, Mars. J. Geophys. Res.112, E08009 (2007). Article Google Scholar
Crown, D. A., Bleamaster, L. F. III & Mest, S. C. Styles and timing of volatile-driven activity in the eastern Hellas region of Mars. J. Geophys. Res.110, E12S22 (2005). Article Google Scholar
Carr, M. H. & Head, J. W. III Oceans on Mars: An assessment of the observational evidence and possible fate. J. Geophys. Res.108, 5042–5070 (2003). Article Google Scholar
Leverington, D. W. & Ghent, R. R. Differential subsidence and rebound in response to changes in water loading on Mars: Possible effects on the geometry of ancient shorelines. J. Geophys. Res.109, E01005 (2004). Google Scholar
Ruiz, J., Fairen, A. G., Dohm, J. M. & Tejero, R. Thermal isostasy and deformation of possible paleoshorelines on Mars. Planet. Space Sci.52, 1297–1301 (2004). Article Google Scholar
Perron, J. T., Mitrovica, J. X., Manga, M., Matsuyama, I. & Richards, M. A. Evidence for an ancient martian ocean in the topography of deformed shorelines. Nature447, 840–843 (2007). Article Google Scholar
Scott, D. H. & Tanaka, K. L. Geologic Map of the Western Equatorial Region of Mars. (Misc. Invest. Ser. Map, I-1802–A, United States Geological Survey (USGS), 1986). Google Scholar
Greeley, R. & Guest, J. E. Geologic Map of the Eastern Equatorial Region of Mars. (Misc. Invest. Ser. Map, I-1802–B, United States Geological Survey (USGS), 1987). Google Scholar