Literature DB >> 21817049

Seasonal flows on warm Martian slopes.

Alfred S McEwen1, Lujendra Ojha, Colin M Dundas, Sarah S Mattson, Shane Byrne, James J Wray, Selby C Cull, Scott L Murchie, Nicolas Thomas, Virginia C Gulick.   

Abstract

Water probably flowed across ancient Mars, but whether it ever exists as a liquid on the surface today remains debatable. Recurring slope lineae (RSL) are narrow (0.5 to 5 meters), relatively dark markings on steep (25° to 40°) slopes; repeat images from the Mars Reconnaissance Orbiter High Resolution Imaging Science Experiment show them to appear and incrementally grow during warm seasons and fade in cold seasons. They extend downslope from bedrock outcrops, often associated with small channels, and hundreds of them form in some rare locations. RSL appear and lengthen in the late southern spring and summer from 48°S to 32°S latitudes favoring equator-facing slopes, which are times and places with peak surface temperatures from ~250 to 300 kelvin. Liquid brines near the surface might explain this activity, but the exact mechanism and source of water are not understood.

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Year:  2011        PMID: 21817049     DOI: 10.1126/science.1204816

Source DB:  PubMed          Journal:  Science        ISSN: 0036-8075            Impact factor:   47.728


  48 in total

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Review 5.  The Astrobiology Primer v2.0.

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7.  Low Pressure Tolerance by Methanogens in an Aqueous Environment: Implications for Subsurface Life on Mars.

Authors:  R L Mickol; T A Kral
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8.  Bacterial growth at the high concentrations of magnesium sulfate found in martian soils.

Authors:  J D Crisler; T M Newville; F Chen; B C Clark; M A Schneegurt
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9.  Geomorphological evidence for a dry dust avalanche origin of slope streaks on Mars.

Authors:  Colin M Dundas
Journal:  Nat Geosci       Date:  2020-06-29       Impact factor: 16.908

10.  Bacterial growth at -15 °C; molecular insights from the permafrost bacterium Planococcus halocryophilus Or1.

Authors:  Nadia C S Mykytczuk; Simon J Foote; Chris R Omelon; Gordon Southam; Charles W Greer; Lyle G Whyte
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