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Items: 26

1.

Exoplanet Biosignatures: At the Dawn of a New Era of Planetary Observations.

Kiang NY, Domagal-Goldman S, Parenteau MN, Catling DC, Fujii Y, Meadows VS, Schwieterman EW, Walker SI.

Astrobiology. 2018 May 9. doi: 10.1089/ast.2018.1862. [Epub ahead of print]

PMID:
29741918
2.

Exoplanet Biosignatures: A Framework for Their Assessment.

Catling DC, Krissansen-Totton J, Kiang NY, Crisp D, Robinson TD, DasSarma S, Rushby AJ, Del Genio A, Bains W, Domagal-Goldman S.

Astrobiology. 2018 Apr 20. doi: 10.1089/ast.2017.1737. [Epub ahead of print]

PMID:
29676932
3.

Constraining the climate and ocean pH of the early Earth with a geological carbon cycle model.

Krissansen-Totton J, Arney GN, Catling DC.

Proc Natl Acad Sci U S A. 2018 Apr 17;115(16):4105-4110. doi: 10.1073/pnas.1721296115. Epub 2018 Apr 2.

4.

Disequilibrium biosignatures over Earth history and implications for detecting exoplanet life.

Krissansen-Totton J, Olson S, Catling DC.

Sci Adv. 2018 Jan 24;4(1):eaao5747. doi: 10.1126/sciadv.aao5747. eCollection 2018 Jan.

5.

Constraining climate sensitivity and continental versus seafloor weathering using an inverse geological carbon cycle model.

Krissansen-Totton J, Catling DC.

Nat Commun. 2017 May 22;8:15423. doi: 10.1038/ncomms15423.

6.

On Detecting Biospheres from Chemical Thermodynamic Disequilibrium in Planetary Atmospheres.

Krissansen-Totton J, Bergsman DS, Catling DC.

Astrobiology. 2016 Jan;16(1):39-67. doi: 10.1089/ast.2015.1327.

PMID:
26789355
7.

Selenium isotope evidence for progressive oxidation of the Neoproterozoic biosphere.

Pogge von Strandmann PA, St├╝eken EE, Elliott T, Poulton SW, Dehler CM, Canfield DE, Catling DC.

Nat Commun. 2015 Dec 18;6:10157. doi: 10.1038/ncomms10157.

8.

Atmospheric hydrogen peroxide and Eoarchean iron formations.

Pecoits E, Smith ML, Catling DC, Philippot P, Kappler A, Konhauser KO.

Geobiology. 2015 Jan;13(1):1-14. doi: 10.1111/gbi.12116. Epub 2014 Oct 16.

PMID:
25324177
9.

Atmospheric oxygenation and volcanism.

Kasting JF, Catling DC, Zahnle K.

Nature. 2012 Jul 25;487(7408):E1; discussion E2. doi: 10.1038/nature11274. No abstract available.

PMID:
22837006
10.

Air density 2.7 billion years ago limited to less than twice modern levels by fossil raindrop imprints.

Som SM, Catling DC, Harnmeijer JP, Polivka PM, Buick R.

Nature. 2012 Mar 28;484(7394):359-62. doi: 10.1038/nature10890.

PMID:
22456703
11.

Discovery of natural perchlorate in the Antarctic Dry Valleys and its global implications.

Kounaves SP, Stroble ST, Anderson RM, Moore Q, Catling DC, Douglas S, McKay CP, Ming DW, Smith PH, Tamppari LK, Zent AP.

Environ Sci Technol. 2010 Apr 1;44(7):2360-4. doi: 10.1021/es9033606.

PMID:
20155929
12.

Detection of perchlorate and the soluble chemistry of martian soil at the Phoenix lander site.

Hecht MH, Kounaves SP, Quinn RC, West SJ, Young SM, Ming DW, Catling DC, Clark BC, Boynton WV, Hoffman J, Deflores LP, Gospodinova K, Kapit J, Smith PH.

Science. 2009 Jul 3;325(5936):64-7. doi: 10.1126/science.1172466.

13.

Evidence for calcium carbonate at the Mars Phoenix landing site.

Boynton WV, Ming DW, Kounaves SP, Young SM, Arvidson RE, Hecht MH, Hoffman J, Niles PB, Hamara DK, Quinn RC, Smith PH, Sutter B, Catling DC, Morris RV.

Science. 2009 Jul 3;325(5936):61-4. doi: 10.1126/science.1172768.

14.

H2O at the Phoenix landing site.

Smith PH, Tamppari LK, Arvidson RE, Bass D, Blaney D, Boynton WV, Carswell A, Catling DC, Clark BC, Duck T, Dejong E, Fisher D, Goetz W, Gunnlaugsson HP, Hecht MH, Hipkin V, Hoffman J, Hviid SF, Keller HU, Kounaves SP, Lange CF, Lemmon MT, Madsen MB, Markiewicz WJ, Marshall J, McKay CP, Mellon MT, Ming DW, Morris RV, Pike WT, Renno N, Staufer U, Stoker C, Taylor P, Whiteway JA, Zent AP.

Science. 2009 Jul 3;325(5936):58-61. doi: 10.1126/science.1172339.

15.

The planetary air leak.

Catling DC, Zahnle KJ.

Sci Am. 2009 May;300(5):36-43. No abstract available.

PMID:
19438047
16.

Mars: ancient fingerprints in the clay.

Catling DC.

Nature. 2007 Jul 5;448(7149):31-2. No abstract available.

PMID:
17611529
17.

Anaerobic methanotrophy and the rise of atmospheric oxygen.

Catling DC, Claire MW, Zahnle KJ.

Philos Trans A Math Phys Eng Sci. 2007 Jul 15;365(1856):1867-88.

18.

Oxidant enhancement in martian dust devils and storms: storm electric fields and electron dissociative attachment.

Delory GT, Farrell WM, Atreya SK, Renno NO, Wong AS, Cummer SA, Sentman DD, Marshall JR, Rafkin SC, Catling DC.

Astrobiology. 2006 Jun;6(3):451-62. Review.

19.

Oxidant enhancement in martian dust devils and storms: implications for life and habitability.

Atreya SK, Wong AS, Renno NO, Farrell WM, Delory GT, Sentman DD, Cummer SA, Marshall JR, Rafkin SC, Catling DC.

Astrobiology. 2006 Jun;6(3):439-50.

20.

Comment on "A hydrogen-rich early Earth atmosphere".

Catling DC.

Science. 2006 Jan 6;311(5757):38; author reply 38.

21.

Key science questions from the second conference on early Mars: geologic, hydrologic, and climatic evolution and the implications for life.

Beaty DW, Clifford SM, Borg LE, Catling DC, Craddock RA, Des Marais DJ, Farmer JD, Frey HV, Haberle RM, McKay CP, Newsom HE, Parker TJ, Segura T, Tanaka KL.

Astrobiology. 2005 Dec;5(6):663-89.

PMID:
16379524
22.

Mars: twin studies on Mars.

Catling DC.

Nature. 2005 Jul 7;436(7047):42-3. No abstract available.

PMID:
16001057
23.

Why O2 is required by complex life on habitable planets and the concept of planetary "oxygenation time".

Catling DC, Glein CR, Zahnle KJ, McKay CP.

Astrobiology. 2005 Jun;5(3):415-38.

PMID:
15941384
24.

Planetary science: on Earth, as it is on Mars?

Catling DC.

Nature. 2004 Jun 17;429(6993):707-8. No abstract available.

PMID:
15201892
25.

The ultraviolet environment of Mars: biological implications past, present, and future.

Cockell CS, Catling DC, Davis WL, Snook K, Kepner RL, Lee P, McKay CP.

Icarus. 2000 Aug;146(2):343-59.

PMID:
11543504
26.

Biogenic methane, hydrogen escape, and the irreversible oxidation of early Earth.

Catling DC, Zahnle KJ, McKay C.

Science. 2001 Aug 3;293(5531):839-43.

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