Eric Gaidos, Franck Selsis: From Protoplanets to Protolife: The Emergence and Maintenance of Life. In: Protostars and Planets V. 2007, S.929–44, arxiv:astro-ph/0602008, bibcode:2007prpl.conf..929G.
astrobio.net
Jeremy Hsu: Scarce Shelter on Mars. Astrobiology (Journal), 4. Juni 2009, abgerufen am 16. September 2014.
John P. Grotzinger, D. Y. Sumner, L. C. Kah, K. Stack, S. Gupta, L. Edgar, D. Rubin, K. Lewis et al.: A Habitable Fluvio-Lacustrine Environment at Yellowknife Bay, Gale Crater, Mars. In: Science. 343. Jahrgang, Nr.6169, S.1242777, doi:10.1126/science.1242777 (sciencemag.org).
R.J. Worth, Steinn Sigurdsson, Christopher H. House: Seeding Life on the Moons of the Outer Planets via Lithopanspermia. In: Astrobiology. 13, 2013, S. 1155, doi:10.1089/ast.2013.1028.
Aleksandar Janjic: The Need for Including Virus Detection Methods in Future Mars Missions. In: Astrobiology. Band18, Nr.12, S.1611–1614, doi:10.1089/ast.2018.1851.
Richard W. Court, Mark A. Sephton: Investigating the contribution of methane produced by ablating micrometeorites to the atmosphere of Mars. In: Earth and Planetary Science Letters. 288. Jahrgang, Nr.3–4, 2009, S.382–5, doi:10.1016/j.epsl.2009.09.041, bibcode:2009E&PSL.288..382C (physorg.com).
Paul R. Mahaffy et al.: Abundance and Isotopic Composition of Gases in the Martian Atmosphere from the Curiosity Rover. In: Science. 341. Jahrgang, Nr.6143, S.263–266, doi:10.1126/science.1237966 (sciencemag.org).
Christopher R. Webster, Paul R. Mahaffy, Sushil K. Atreya, Gregory J. Flesch, Kenneth A. Farley: Low Upper Limit to Methane Abundance on Mars. In: Science. doi:10.1126/science.1242902 (sciencemag.org).
Silvano Onofri, Jean-Pierre de Vera, Laura Zucconi, Laura Selbmann, Giuliano Scalzi, Kasthuri J. Venkateswaran, Elke Rabbow, Rosa de la Torre, Gerda Horneck. Survival of Antarctic Cryptoendolithic Fungi in Simulated Martian Conditions On Board the International Space Station. In: Astrobiology, 2015, 15 (12), S. 1052, doi:10.1089/ast.2015.1324
Jennifer L. Heldmann, Owen B. Toon, Wayne H. Pollard, Michael T. Mellon, John Pitlick: Formation of Martian gullies by the action of liquid water flowing under current Martian environmental conditions. In: Journal of Geophysical Research. 110. Jahrgang, E5, 2005, S.E05004, doi:10.1029/2004JE002261, bibcode:2005JGRE..110.5004H.
V.-P. Kostama, M. A. Kreslavsky, J. W. Head: Recent high-latitude icy mantle in the northern plains of Mars: Characteristics and ages of emplacement. In: Geophysical Research Letters. 33. Jahrgang, Nr.11, 2006, S.11201, doi:10.1029/2006GL025946, bibcode:2006GeoRL..3311201K.
V. R. Baker, R. G. Strom, V. C. Gulick, J. S. Kargel, G. Komatsu: Ancient oceans, ice sheets and the hydrological cycle on Mars. In: Nature. 352. Jahrgang, Nr.6336, 1991, S.589, doi:10.1038/352589a0, bibcode:1991Natur.352..589B.
Michael H. Carr, James W. Head: Oceans on Mars: An assessment of the observational evidence and possible fate. In: Journal of Geophysical Research (Planets). 108. Jahrgang, 2003, S.5042, doi:10.1029/2002JE001963, bibcode:2003JGRE..108.5042C.
Gaetano Di Achille, Brian M. Hynek: Ancient ocean on Mars supported by global distribution of deltas and valleys. In: Nature Geoscience. 3. Jahrgang, Nr.7, 2010, S.459–63, doi:10.1038/ngeo891, bibcode:2010NatGe...3..459D.
Jacob Heinz, Tim Krahn, Dirk Schulze-Makuch: A New Record for Microbial Perchlorate Tolerance: Fungal Growth in NaClO4 Brines and its Implications for Putative Life on Mars. In: Life. Band10, Nr.5, 28. April 2020, ISSN2075-1729, S.53, doi:10.3390/life10050053, PMID 32353964, PMC 7281446 (freier Volltext) – (mdpi.com [abgerufen am 31. August 2022]).
Jacob Heinz, Joerg Doellinger, Deborah Maus, Andy Schneider, Peter Lasch: Perchlorate‐specific proteomic stress responses of Debaryomyces hansenii could enable microbial survival in Martian brines. In: Environmental Microbiology. 10. August 2022, ISSN1462-2912, S.1462–2920.16152, doi:10.1111/1462-2920.16152.
Eric Gaidos, Franck Selsis: From Protoplanets to Protolife: The Emergence and Maintenance of Life. In: Protostars and Planets V. 2007, S.929–44, arxiv:astro-ph/0602008, bibcode:2007prpl.conf..929G.
Richard W. Court, Mark A. Sephton: Investigating the contribution of methane produced by ablating micrometeorites to the atmosphere of Mars. In: Earth and Planetary Science Letters. 288. Jahrgang, Nr.3–4, 2009, S.382–5, doi:10.1016/j.epsl.2009.09.041, bibcode:2009E&PSL.288..382C (physorg.com).
Jennifer L. Heldmann, Owen B. Toon, Wayne H. Pollard, Michael T. Mellon, John Pitlick: Formation of Martian gullies by the action of liquid water flowing under current Martian environmental conditions. In: Journal of Geophysical Research. 110. Jahrgang, E5, 2005, S.E05004, doi:10.1029/2004JE002261, bibcode:2005JGRE..110.5004H.
V.-P. Kostama, M. A. Kreslavsky, J. W. Head: Recent high-latitude icy mantle in the northern plains of Mars: Characteristics and ages of emplacement. In: Geophysical Research Letters. 33. Jahrgang, Nr.11, 2006, S.11201, doi:10.1029/2006GL025946, bibcode:2006GeoRL..3311201K.
V. R. Baker, R. G. Strom, V. C. Gulick, J. S. Kargel, G. Komatsu: Ancient oceans, ice sheets and the hydrological cycle on Mars. In: Nature. 352. Jahrgang, Nr.6336, 1991, S.589, doi:10.1038/352589a0, bibcode:1991Natur.352..589B.
Michael H. Carr, James W. Head: Oceans on Mars: An assessment of the observational evidence and possible fate. In: Journal of Geophysical Research (Planets). 108. Jahrgang, 2003, S.5042, doi:10.1029/2002JE001963, bibcode:2003JGRE..108.5042C.
Gaetano Di Achille, Brian M. Hynek: Ancient ocean on Mars supported by global distribution of deltas and valleys. In: Nature Geoscience. 3. Jahrgang, Nr.7, 2010, S.459–63, doi:10.1038/ngeo891, bibcode:2010NatGe...3..459D.
Jacob Heinz, Tim Krahn, Dirk Schulze-Makuch: A New Record for Microbial Perchlorate Tolerance: Fungal Growth in NaClO4 Brines and its Implications for Putative Life on Mars. In: Life. Band10, Nr.5, 28. April 2020, ISSN2075-1729, S.53, doi:10.3390/life10050053, PMID 32353964, PMC 7281446 (freier Volltext) – (mdpi.com [abgerufen am 31. August 2022]).
Jacob Heinz, Tim Krahn, Dirk Schulze-Makuch: A New Record for Microbial Perchlorate Tolerance: Fungal Growth in NaClO4 Brines and its Implications for Putative Life on Mars. In: Life. Band10, Nr.5, 28. April 2020, ISSN2075-1729, S.53, doi:10.3390/life10050053, PMID 32353964, PMC 7281446 (freier Volltext) – (mdpi.com [abgerufen am 31. August 2022]).
physorg.com
Richard W. Court, Mark A. Sephton: Investigating the contribution of methane produced by ablating micrometeorites to the atmosphere of Mars. In: Earth and Planetary Science Letters. 288. Jahrgang, Nr.3–4, 2009, S.382–5, doi:10.1016/j.epsl.2009.09.041, bibcode:2009E&PSL.288..382C (physorg.com).
redirecter.toolforge.org
Martin Baucom: Life on Mars? American Scientist, archiviert vom Original am 15. Juni 2017; abgerufen am 26. Februar 2007 (englisch).
Bill Steigerwald: Martian Methane Reveals the Red Planet is not a Dead Planet. In: NASA’s Goddard Space Flight Center. NASA, 15. Januar 2009, archiviert vom Original am 16. Januar 2009; abgerufen am 7. Februar 2021: „If microscopic Martian life is producing the methane, it probably resides far below the surface, where it’s still warm enough for liquid water to exist“
David Tenenbaum: Making Sense of Mars Methane. In: Astrobiology Magazine. 9. Juni 2008, archiviert vom Original am 23. September 2008; abgerufen am 22. Oktober 2014.
Thorsten Dambeck: Seen auf dem frühen Mars. NZZ Online, 1. Oktober 2008, archiviert vom Original am 5. November 2012; abgerufen am 18. September 2009.
Thorsten Dambeck: Europas Planetenforschung etabliert sich. NZZ Online, 29. Oktober 2008, archiviert vom Original am 5. November 2012; abgerufen am 18. September 2009 (Bericht von der EPSC-Konferenz in Münster).
John P. Grotzinger, D. Y. Sumner, L. C. Kah, K. Stack, S. Gupta, L. Edgar, D. Rubin, K. Lewis et al.: A Habitable Fluvio-Lacustrine Environment at Yellowknife Bay, Gale Crater, Mars. In: Science. 343. Jahrgang, Nr.6169, S.1242777, doi:10.1126/science.1242777 (sciencemag.org).
Paul R. Mahaffy et al.: Abundance and Isotopic Composition of Gases in the Martian Atmosphere from the Curiosity Rover. In: Science. 341. Jahrgang, Nr.6143, S.263–266, doi:10.1126/science.1237966 (sciencemag.org).
Christopher R. Webster, Paul R. Mahaffy, Sushil K. Atreya, Gregory J. Flesch, Kenneth A. Farley: Low Upper Limit to Methane Abundance on Mars. In: Science. doi:10.1126/science.1242902 (sciencemag.org).
Martin Baucom: Life on Mars? American Scientist, archiviert vom Original am 15. Juni 2017; abgerufen am 26. Februar 2007 (englisch).
Bill Steigerwald: Martian Methane Reveals the Red Planet is not a Dead Planet. In: NASA’s Goddard Space Flight Center. NASA, 15. Januar 2009, archiviert vom Original am 16. Januar 2009; abgerufen am 7. Februar 2021: „If microscopic Martian life is producing the methane, it probably resides far below the surface, where it’s still warm enough for liquid water to exist“
David Tenenbaum: Making Sense of Mars Methane. In: Astrobiology Magazine. 9. Juni 2008, archiviert vom Original am 23. September 2008; abgerufen am 22. Oktober 2014.
Thorsten Dambeck: Europas Planetenforschung etabliert sich. NZZ Online, 29. Oktober 2008, archiviert vom Original am 5. November 2012; abgerufen am 18. September 2009 (Bericht von der EPSC-Konferenz in Münster).
worldcat.org
Alfred Russel Wallace: Is Mars habitable?: A critical examination of Professor Percival Lowell’s book ‘Mars and its canals’, with an alternative explanation. Macmillan, London 1907, OCLC263175453.
zdb-katalog.de
Patrick Zasada (2015): Über die potentielle Entdeckung des Lebens auf dem Mars, Sternzeit (2/2015): 91–96 (ISSN0721-8168).
Jacob Heinz, Tim Krahn, Dirk Schulze-Makuch: A New Record for Microbial Perchlorate Tolerance: Fungal Growth in NaClO4 Brines and its Implications for Putative Life on Mars. In: Life. Band10, Nr.5, 28. April 2020, ISSN2075-1729, S.53, doi:10.3390/life10050053, PMID 32353964, PMC 7281446 (freier Volltext) – (mdpi.com [abgerufen am 31. August 2022]).
Jacob Heinz, Joerg Doellinger, Deborah Maus, Andy Schneider, Peter Lasch: Perchlorate‐specific proteomic stress responses of Debaryomyces hansenii could enable microbial survival in Martian brines. In: Environmental Microbiology. 10. August 2022, ISSN1462-2912, S.1462–2920.16152, doi:10.1111/1462-2920.16152.
zgw-online.de
Patrick Zasada: Gradation of extraterrestrial fluvial sediments – related to the gravity. In: Z. geol. Wiss., 41/42 (3), 2013/14, S. 167–183, Abstract (PDF; 100 kB)