BignamiGF. European vision for space science. COSPAR Information Bulletin, 2005; 164:8–15.
2.
CatlingDC, GleinCR, ZahnleKJ, et al.Why O2 is required by complex life on habitable planets and the concept of planetary “Oxygenation Time. Astrobiology, 2005; 5(3):415–438; doi: 10.1089/ast.2005.5.415
3.
CirkovicM. The temporal aspect of the Drake equation and SETI. Astrobiology, 2004:225–231; doi: 10.1089/153110704323175160
4.
CirkovicM. The Astrobiological Landscape, Cambridge University Press; 2010. doi: 10.1017/CBO9780511667404
5.
DoddMS, PapineauD, GrenneT, et al.Evidence for early life in Earth’s oldest hydrothermal vent precipitates. Nature, 2017; 543(7643):60–64; doi: 10.1038/nature21377
6.
HedgesSB. The origin and evolution of model organisms. Nat Rev Genet, 2002; 3(11):838–849; doi: 10.1038/nrg929
JabłońskaJ, TawfikDS. The evolution of oxygen-utilizing enzymes suggests early biosphere oxygenation. Nat Ecol Evol, 2021; 5(4):442–448; doi: 10.1038/s41559-020-01386-9
9.
LammerH, ScherfM, SproßL. Eta-Earth revisited I: A formula for estimating the maximum number of Earth-like Habitats. Astrobiology, 2024; 24(10):897–915; doi: 10.1089/ast.2023.0075
10.
LammerH. Origin and evolution of planetary atmospheres: Implications for habitability, Springer Briefs in Astronomy. 2013. doi:10.1007/978-3-642-32087-3
11.
LammerH, SproßL, GrenfellJL, et al. The Role of N2 as a Geo-Biosignature for the Detection and Characterization of Earth-like Habitats. Astrobiology, 2019; 19(7):927–950; doi: 10.1089/ast.2018.1914
12.
LammerH, BredehöftJH, CoustenisA, et al.What makes a planet habitable? Astron Astrophys Rev, 2009; 17(2):181–249; doi: 10.1007/s00159-009-0019-z
13.
LineweaverC, ChopraA. The habitability of our Earth and other Earths: Astrophysical, geochemical, geophysical, and biological limits on planet habitability. Annu Rev Earth Planet Sci, 2012; 40(1):597–623; doi: 10.1146/annurev-earth-042711-105531
14.
LyonsTW, ReinhardCT, PlanavskyNJ. The rise of oxygen in Earth’s early ocean and atmosphere. Nature, 2014; 506(7488):307–315; doi: 10.1038/nature13068
15.
MayorM, QuelozD. A Jupiter-mass companion to a solar-type star. Nature, 1995; 378(6555):355–359; doi: 10.1038/378355a0
16.
MichalskiJR, OnstottTC, MojzsisSJ, et al.The Martian subsurface as a potential window into the origin of life. Nature Geosci, 1998; 11(1):21–26; doi: 10.1038/s41561-017-0015-2
17.
MojzsisSJ, ArrheniusG, McKeeganKD, et al.Evidence of life on Earth before 3,800 million years ago. Nature, 1996; 384(6604):55–59; doi: 10.1038/s41561-017-0015-2
18.
MoodyERR, Álvarez-CarreteroS, MahendrarajahTA, et al.The nature of the last universal common ancestor and its impact on the early Earth system. Nat Ecol Evol, 2024; doi: 10.1038/s41559-024-02461-1
NutmanAP, BennettVC, FriendCRL, et al.Rapid emergence of life shown by discovery of 3.700-million-year-old microbial structures. Nature, 2016; 537(7621):535–538; doi: 10.1038/nature19355
22.
ScherfM, LammerH, SproßL. Eta-Earth revisited II: Deriving a maximum number of Earth-like habitats in the galactic disk. Astrobiology. 2024; 24(10):e916–e1061; doi: 10.1089/ast.2023.0076
23.
SchwietermanEW, ReinhardCT, OlsonSL, et al.A limited habitable zone for complex life. Astrophys. J, 2019; 878(1):19; doi: 10.3847/1538-4357/ab1d52
24.
SleepNH, BirdDK. Evolutionary ecology during the rise of dioxygen in the Earth’s atmosphere. Phil Trans R Soc B, 2008; 363(1504):2651–2664; doi: 10.1098/rstb.2008.0018
TashiroT, IshidaA, HoriM, et al.Early trace of life from 3.95 Ga sedimentary rocks in Labrador, Canada. Nature, 2017; 549(7673):516–518; doi: 10.1038/nature24019