The Resilience of Life to Astrophysical Events
arXiv:1707.04253 · doi:10.1038/s41598-017-05796-x
Abstract
Much attention has been given in the literature to the effects of astrophysical events on human and land-based life. However, little has been discussed on the resilience of life itself. Here we instead explore the statistics of events that completely sterilise an Earth-like planet with planet radii in the range and temperatures of , eradicating all forms of life. We consider the relative likelihood of complete global sterilisation events from three astrophysical sources -- supernovae, gamma-ray bursts, large asteroid impacts, and passing-by stars. To assess such probabilities we consider what cataclysmic event could lead to the annihilation of not just human life, but also extremophiles, through the boiling of all water in Earth's oceans. Surprisingly we find that although human life is somewhat fragile to nearby events, the resilience of Ecdysozoa such as \emph{Milnesium tardigradum} renders global sterilisation an unlikely event.
To appear in Scientific Reports; 14 pages, 2 figures
References in corpus (3)
Cited by in corpus (10)
- Risks for life on habitable planets from superflares of their host stars
- Reduced Diversity of Life Around Proxima Centauri and TRAPPIST-1
- The Habitability of the Galactic Bulge
- Eta-Earth Revisited II: Deriving a Maximum Number of Earth-like Habitats in the Galactic Disk
- If Loud Aliens Explain Human Earliness, Quiet Aliens Are Also Rare
- What Would Happen If We Were About 1 pc Away from a Supermassive Black Hole?
- A Birth-Death-Migration Model for Life in Astrophysical Environments
- Shaping Galactic Habitability: the impact of stellar migration and gas giants
- Gamma Ray Bursts: Not so Much Deadlier than We Thought
- The Implications of 'Oumuamua on Panspermia