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Science

Geology of the Ariadnes Basin, NE Eridania quadrangle, Mars – 1:1Million

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Pages 487-499 | Received 04 Oct 2013, Accepted 23 Jan 2014, Published online: 11 Feb 2014

References

  • Adeli, S., Le Deit, L., Hauber, E., Molina, A., & Jaumann, R. (2012). Phyllosilicate-rich Knobs in the Atlantis Chaos Basin, Terra Sirenum, Vol. 7 (p. 291). Presented at the European planetary science congress 2012, held 23–28 September, 2012 in Madrid, Spain, id. EPSC2012-291.
  • Anderson, R. C., & Dohm, J. M. (2011). Unraveling the complex history of faulting for the Terra Sirenum region; Mars, Vol. 42 (p. 2221). Lunar and planetary institute science conference abstracts, The Woodlands, Texas.
  • Anderson, R. C., Dohm, J. M., Robbins, S., Hynek, B., & Andrews-Hanna, J. (2012). Terra Sirenum: Window into pre-tharsis and tharsis phases of mars evolution, Vol. 43 (p. 2803). Lunar and planetary institute science conference abstracts, The Woodlands, Texas.
  • Baker, D. M. H., & Head, J. W. (2012). Geology and chronology of the Ma'adim Vallis-Eridania basin region, mars: Implications for the Noachian-Hesperian hydrologic cycle, Vol. 43 (p. 1252). Lunar and planetary institute science conference abstracts, The Woodlands, Texas.
  • Baker, V. R., Strom, R. G., Gulick, V. C., Kargel, J. S., Komatsu, G., & Kale, V. S. (1991). Ancient oceans, ice sheets and the hydrological cycle on Mars. Nature, 352(6336), 589–594. doi:10.1038/352589a0 doi: 10.1038/352589a0
  • Bibring, J.-P., Langevin, Y., Gendrin, A., Gondet, B., Poulet, F., Berthé, M., … Drossart, P. (2005). Mars surface diversity as revealed by the OMEGA/Mars express observations. Science, 307(5715), 1576–1581. doi:10.1126/science.1108806 doi: 10.1126/science.1108806
  • Cabrol, N. A., Grin, E. A., Landheim, R., Kuzmin, R. O., & Greeley, R. (1998). Duration of the Ma'adim Vallis/Gusev crater hydrogeologic system, mars. Icarus, 133(1), 98–108. doi:10.1006/icar.1998.5914 doi: 10.1006/icar.1998.5914
  • Carr, M. H. (2006). The surface of mars (Vol. 6). NY: Cambridge University Press.
  • Christensen, P. R., Jakosky, B. M., Kieffer, H. H., Malin, M. C., McSween, Jr, H. Y., Nealson, K., … Ravine, M. (2004). The thermal emission imaging system (Themis) for the mars 2001 Odyssey mission. In C. T. Russell (Ed.), 2001 Mars Odyssey (pp. 85–130). Netherlands: Springer.
  • De Pablo, M. A., & Fairén, A. G. (2004). Atlantis basin, Sirenum Terrae, Mars: geological setting and astrobiological implications. International Journal of Astrobiology, 3(3), 257–263. doi:10.1017/S147355040400196X doi: 10.1017/S147355040400196X
  • Ehlmann, B. L., Mustard, J. F., Murchie, S. L., Bibring, J.-P., Meunier, A., Fraeman, A. A., & Langevin, Y. (2011). Subsurface water and clay mineral formation during the early history of Mars. Nature, 479(7371), 53–60. doi:10.1038/nature10582 doi: 10.1038/nature10582
  • Fassett, C. I., & Head III, J. W. (2008). The timing of martian valley network activity: Constraints from buffered crater counting. Icarus, 195(1), 61–89. doi:10.1016/j.icarus.2007.12.009 doi: 10.1016/j.icarus.2007.12.009
  • FGDC. (2006). FGDC Digital Cartographic Standard for Geologic Map Symbolization. National Aeronautics and Space Administration (Doctoral dissertation, National Aeronautics and Space Administration).
  • Gilmore, M. S., Thompson, D. R., Anderson, L. J., Karamzadeh, N., Mandrake, L., & Castaño, R. (2011). Superpixel segmentation for analysis of hyperspectral data sets, with application to Compact Reconnaissance Imaging Spectrometer for Mars data, Moon Mineralogy Mapper data, and Ariadnes Chaos, Mars. Journal of Geophysical Research: Planets, 116(E7), E07001. doi:10.1029/2010JE003763 doi: 10.1029/2010JE003763
  • Glotch, T. D., Bandfield, J. L., Tornabene, L. L., Jensen, H. B., & Seelos, F. P. (2010). Distribution and formation of chlorides and phyllosilicates in Terra Sirenum, Mars. Geophysical Research Letters, 37(16), L16202. doi:10.1029/2010GL044557 doi: 10.1029/2010GL044557
  • Grant, J. A., & Schultz, P. H. (1990). Gradational epochs on Mars: Evidence from West-Northwest of Isidis Basin and Electris. Icarus, 84(1), 166–195. doi:10.1016/0019-1035(90)90164-5 doi: 10.1016/0019-1035(90)90164-5
  • Grant, J. A., Wilson, S. A., Noe Dobrea, E., Fergason, R. L., Griffes, J. L., Moore, J. M., & Howard, A. D. (2010). HiRISE views enigmatic deposits in the Sirenum Fossae region of Mars. Icarus, 205(1), 53–63. doi:10.1016/j.icarus.2009.04.009 doi: 10.1016/j.icarus.2009.04.009
  • Greeley, R., & Guest, J. (1987). Geologic map of the eastern equatorial region of Mars. USGS Numbered Series. M(200) I no.1802-B.
  • Hansen, V. L. (2000). Geologic mapping of tectonic planets. Earth and Planetary Science Letters, 176(3–4), 527–542. doi:10.1016/S0012-821X(00)00017-0 doi: 10.1016/S0012-821X(00)00017-0
  • Hartmann, W. K., & Neukum, G. (2001). Cratering chronology and the evolution of mars. Space Science Reviews, 96(1–4), 165–194. doi:10.1023/A:1011945222010 doi: 10.1023/A:1011945222010
  • Hook, S. J., Gabell, A., Green, A., & Kealy, P. (1992). A comparison of techniques for extracting emissivity information from thermal infrared data for geologic studies. Remote Sensing of Environment, 42(2), 123–135. doi:10.1016/0034-4257(92)90096-3 doi: 10.1016/0034-4257(92)90096-3
  • Howard, A. D., & Moore, J. M. (2011). Late Hesperian to early Amazonian midlatitude Martian valleys: Evidence from Newton and Gorgonum basins. Journal of Geophysical Research: Planets, 116(E5), E05003. doi:10.1029/2010JE003782 doi: 10.1029/2010JE003782
  • Irwin, R. P., Howard, A. D., & Maxwell, T. A. (2004). Geomorphology of Ma'adim Vallis, Mars, and associated paleolake basins. Journal of Geophysical Research: Planets, 109(E12), E12009. doi:10.1029/2004JE002287 doi: 10.1029/2004JE002287
  • Irwin, R. P., Maxwell, T. A., Howard, A. D., Craddock, R. A., & Leverington, D. W. (2002). A large Paleolake basin at the head of Ma'adim Vallis, mars. Science, 296(5576), 2209–2212. doi:10.1126/science.1071143 doi: 10.1126/science.1071143
  • Ivanov, B. A. (2001). Mars/Moon cratering rate ratio estimates. Space Science Reviews, 96(1–4), 87–104. doi:10.1023/A:1011941121102 doi: 10.1023/A:1011941121102
  • Jaumann, R., Neukum, G., Behnke, T., Duxbury, T. C., Eichentopf, K., Flohrer, J., … Wählisch, M. (2007). The high-resolution stereo camera (HRSC) experiment on mars express: Instrument aspects and experiment conduct from interplanetary cruise through the nominal mission. Planetary and Space Science, 55(7–8), 928–952. doi:10.1016/j.pss.2006.12.003 doi: 10.1016/j.pss.2006.12.003
  • Kahle, A. B., Gillespie, A. R., & Goetz, A. F. H. (1976). Thermal inertia imaging: A new geologic mapping tool. Geophysical Research Letters, 3(1), 26–28. doi:10.1029/GL003i001p00026 doi: 10.1029/GL003i001p00026
  • Kneissl, T., van Gasselt, S., & Neukum, G. (2011). Map-projection-independent crater size-frequency determination in GIS environments—New software tool for ArcGIS. Planetary and Space Science, 59(11–12), 1243–1254. doi:10.1016/j.pss.2010.03.015 doi: 10.1016/j.pss.2010.03.015
  • Kuzmin, R., Greeley, R., Landheim, R., Cabrol, N., & Farmer, J. (2000). Geologic mapping of the Ma'adim Vallis-Gusev crater region of Mars. US. Geol. Surv. Misc. Inv. Ser. MTM, 2256–2257.
  • Lucchitta, B. K., Isbell, N. K., & Howington-Kraus, A. (1994). Topography of Valles Marineris: Implications for erosional and structural history. Journal of Geophysical Research: Planets, 99(E2), 3783–3798. doi:10.1029/93JE03095 doi: 10.1029/93JE03095
  • Malin, M. C., Bell, J. F., Cantor, B. A., Caplinger, M. A., Calvin, W. M., Clancy, R. T., … Wolff, M. J. (2007). Context camera investigation on board the mars reconnaissance orbiter. Journal of Geophysical Research: Planets, 112(E5), E05S04. doi:10.1029/2006JE002808 doi: 10.1029/2006JE002808
  • McEwen, A. S., Eliason, E. M., Bergstrom, J. W., Bridges, N. T., Hansen, C. J., Delamere, W. A., … others. (2007). Special section: Mars reconnaissance orbiter mission and science investigations-E05S02-mars reconnaissance orbiter's high resolution imaging science experiment (HiRISE)(doi:10.1029/2005JE002605). Journal of Geophysical Research-Part E-Planets, 112(5), E05S02.
  • Michael, G. G. (2013). Planetary surface dating from crater size–frequency distribution measurements: Multiple resurfacing episodes and differential isochron fitting. Icarus, 226(1), 885–890. doi:10.1016/j.icarus.2013.07.004 doi: 10.1016/j.icarus.2013.07.004
  • Michael, G. G., & Neukum, G. (2010). Planetary surface dating from crater size–frequency distribution measurements: Partial resurfacing events and statistical age uncertainty. Earth and Planetary Science Letters, 294(3–4), 223–229. doi:10.1016/j.epsl.2009.12.041 doi: 10.1016/j.epsl.2009.12.041
  • Molina, A., Hauber, E., Le Deit, L., Adeli, S., Fernández-Remolar, D. C., & de Pablo, M. A. (2012). Geologic analysis of knob fields and sedimentary deposits in Ariadnes Colles, Terra Sirenum, Mars, Vol. 7 (p. 213). Presented at the European planetary science congress 2012, held 23–28 September, 2012 in Madrid, Spain, id. EPSC2012-213.
  • Murchie, S. L., Mustard, J. F., Ehlmann, B. L., Milliken, R. E., Bishop, J. L., McKeown, N. K., … Bibring, J.-P. (2009). A synthesis of Martian aqueous mineralogy after 1 mars year of observations from the mars reconnaissance orbiter. Journal of Geophysical Research: Planets, 114(E2), E00D06. doi:10.1029/2009JE003342
  • Neukum, G., Jaumann, R., & HRSC Co-Investigator and Experiment Team. (2004). HRSC: The high resolution stereo camera of Mars Express. European Space Agency, (Special Publication) ESA SP, 1240, 17–35.
  • Osterloo, M. M., Anderson, F. S., Hamilton, V. E., & Hynek, B. M. (2010). Geologic context of proposed chloride-bearing materials on Mars. Journal of Geophysical Research: Planets, 115(E10), E10012. doi:10.1029/2010JE003613 doi: 10.1029/2010JE003613
  • Osterloo, M. M., Hamilton, V. E., Bandfield, J. L., Glotch, T. D., Baldridge, A. M., Christensen, P. R., … Anderson, F. S. (2008). Chloride-Bearing materials in the Southern highlands of mars. Science, 319(5870), 1651–1654. doi:10.1126/science.1150690 doi: 10.1126/science.1150690
  • Phillips, R. J., Zuber, M. T., Solomon, S. C., Golombek, M. P., Jakosky, B. M., Banerdt, W. B., … Ii, S. A. H. (2001). Ancient geodynamics and global-scale hydrology on mars. Science, 291(5513), 2587–2591. doi:10.1126/science.1058701 doi: 10.1126/science.1058701
  • Scholten, F., Gwinner, K., Roatsch, T., Matz, K., Giese, B., Oberst, J., … Neukum, G. (2005). Mars express HRSC data processing-methods and operational aspects. Photogrammetric Engineering and Remote Sensing, 71(10), 1143–1152. doi: 10.14358/PERS.71.10.1143
  • Schultz, R. A. (1998). Multiple-process origin of Valles Marineris basins and troughs, mars. Planetary and Space Science, 46(6–7), 827–834. doi:10.1016/S0032-0633(98)00030-0 doi: 10.1016/S0032-0633(98)00030-0
  • Smith, D., Neumann, G., Arvidson, R., Guinness, E., & Slavney, S. (2003). Mars global surveyor laser altimeter mission experiment gridded data record. MGS-M-MOLA-5-MEGDR-L3-V1. 0. NASA Planetary Data System. http://pds.nasa.gov/ds-view/pds/viewProfile.jsp?dsid=MGS-M-MOLA-5-MEGDR-L3-V1.0
  • Smith, D. E., Zuber, M. T., Frey, H. V., Garvin, J. B., Head, J. W., Muhleman, D. O., … Sun, X. (2001). Mars Orbiter Laser Altimeter: Experiment summary after the first year of global mapping of Mars. Journal of Geophysical Research: Planets, 106(E10), 23689–23722. doi:10.1029/2000JE001364 doi: 10.1029/2000JE001364
  • Tanaka, K. L. (1997). Sedimentary history and mass flow structures of Chryse and Acidalia Planitiae, Mars. Journal of Geophysical Research: Planets, 102(E2), 4131–4149. doi:10.1029/96JE02862 doi: 10.1029/96JE02862
  • Torson, J. M., & Becker, K. J. (1997). ISIS – A software architecture for processing planetary images, Vol. 28 (p. 1443). Lunar and planetary institute science conference abstracts, The Woodlands, Texas.
  • USGS Astrogeology Team. (1999). United States Geological Survey Integrated Software for Imaging Spectrometers (ISIS).
  • Watson, K. (1975). Geologic applications of thermal infrared images. Proceedings of the IEEE, 63(1), 128–137. doi:10.1109/PROC.1975.9712 doi: 10.1109/PROC.1975.9712
  • Wendt, L., Bishop, J. L., & Neukum, G. (2012). Phyllosilcates in the knob fields around Ariadnes Colles on mars: Stratigraphy, mineralogy and morphology. In A. Abbasi & N. Giesen (Eds.), EGU general assembly conference abstracts (Vol. 14, p. 9105). Vienna, Austria.
  • Wendt, L., Bishop, J. L., & Neukum, G. (2013). Knob fields in the Terra Cimmeria/Terra Sirenum region of Mars: Stratigraphy, mineralogy and morphology. Icarus, 225(1), 200–215. doi:10.1016/j.icarus.2013.03.020 doi: 10.1016/j.icarus.2013.03.020
  • Werner, S. C. (2009). The global martian volcanic evolutionary history. Icarus, 201(1), 44–68. doi:10.1016/j.icarus.2008.12.019 doi: 10.1016/j.icarus.2008.12.019
  • Werner, S. C., & Tanaka, K. L. (2011). Redefinition of the crater-density and absolute-age boundaries for the chronostratigraphic system of Mars. Icarus, 215(2), 603–607. doi:10.1016/j.icarus.2011.07.024 doi: 10.1016/j.icarus.2011.07.024
  • Wilhelms, D. E. (1990). Geologic mapping. In R. Greeley & R. M. Batson (Eds.), Planetary mapping (pp. 208–260). NY: Cambridge University Press.
  • Wilson, L., & Head, J. W. (2002). Tharsis-radial graben systems as the surface manifestation of plume-related dike intrusion complexes: Models and implications. Journal of Geophysical Research: Planets, 107(E8), 1–1–1–24. doi:10.1029/2001JE001593
  • Zuber, M. T., Smith, D. E., Solomon, S. C., Muhleman, D. O., Head, J. W., Garvin, J. B., … Bufton, J. L. (1992). The mars observer laser altimeter investigation. Journal of Geophysical Research: Planets, 97(E5), 7781–7797. doi:10.1029/92JE00341 doi: 10.1029/92JE00341

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