Domagal-GoldmanS.D., SeguraA., ClaireM.W., RobinsonT.D., and MeadowsV.S. (2014) Abiotic ozone and oxygen in atmospheres similar to prebiotic Earth. Astrophys J, 792, doi:10.1088/0004-637X/792/2/90.
2.
GaoP., HuR., RobinsonT.D., LiC., and YungY.L. (2015) Stability of CO2 atmospheres on desiccated M dwarf exoplanets. Astrophys J, 806, doi: 10.1088/0004-637X/806/2/249.
3.
HarmanC.E., SchwietermanE.W., SchottelkotteJ.C., and KastingJ.F. (2015) Abiotic O2 levels on planets around F, G, K, and M stars: possible false positives for life?. Astrophys J, 812, doi:10.1088/0004-637X/812/2/137.
4.
HorowitzN.H., HobbyG.L., and HubbardJ.S. (1976) The Viking carbon assimilation experiments: interim report. Science, 194:1321–1322.
5.
HuR. and SeagerS. (2014) Photochemistry in terrestrial exoplanet atmospheres. III. Photochemistry and thermochemistry in thick atmospheres on super Earths and mini Neptunes. Astrophys J, 784, doi: 10.1088/0004-637X/784/1/63
MeadowsV.S. (2017) Reflections on O2 as a biosignature in exoplanetary atmospheres. Astrobiology, 17, doi:10.1089/ast.2016.1578.
10.
Navarro-GonzálezR., RaineyF.A., MolinaP., BagaleyD.R., HollenB.J., de la RosaJ., SmallA.M., QuinnR.C., GrunthanerF.J., CáceresL., Gomez-SilvaB., and McKayC.P. (2003) Mars-like soils in the Atacama Desert, Chile, and the dry limit of microbial life. Science, 302:1018–1021.
11.
SoffenG.A. (1976) Scientific results of the Viking missions. Science, 194:1274–1276.
12.
TianF., FranceK., LinskyJ.L., MauasP.J.D., and VieytesM.C. (2014) High stellar FUV/NUV ratio and oxygen contents in the atmospheres of potentially habitable planets. Earth Planet Sci Lett, 385:22–27.
13.
WordsworthR., and PierrehumbertR. (2014) Abiotic oxygen-dominated atmospheres on terrestrial habitable zone planets. Astrophys J, 785, doi:10.1088/2041-8205/785/2/L20.