The habitability of the Milky Way during the active phase of its central supermassive black hole
arXiv:1711.11318 · doi:10.1038/s41598-017-16110-0
Abstract
During the peak of their accretion phase, supermassive black holes in galactic cores are known to emit very high levels of ionizing radiation, becoming visible over intergalactic distances as quasars or active galactic nuclei (AGN). Here, we quantify the extent to which the activity of the supermassive black hole at the center of the Milky Way, known as Sagittarius A* (Sgr A*), may have affected the habitability of Earth-like planets in our Galaxy. We focus on the amount of atmospheric loss and on the possible biological damage suffered by planets exposed to X-ray and extreme ultraviolet (XUV) radiation produced during the peak of the active phase of Sgr A*. We find that terrestrial planets could lose a total atmospheric mass comparable to that of present day Earth even at large distances (~1 kiloparsec) from the galactic center. Furthermore, we find that the direct biological damage caused by Sgr A* to surface life on planets not properly screened by an atmosphere was probably significant during the AGN phase, possibly hindering the development of complex life within a few kiloparsecs from the galactic center.
6 pages, 2 figures. Published in Scientific Reports: http://rdcu.be/zYDZ
References in corpus (6)
- Toward the Standard Population Synthesis Model of the X-Ray Background: Evolution of X-Ray Luminosity and Absorption Functions of Active Galactic Nuclei Including Compton-Thick Populations
- Extreme Water Loss and Abiotic O Buildup On Planets Throughout the Habitable Zones of M Dwarfs
- Simultaneous X-ray/optical/UV snapshots of active galactic nuclei from XMM-Newton: spectral energy distributions for the reverberation mapped sample
- The Habitable Zones of Pre-Main-Sequence Stars
- Astrophysical Ionizing Radiation and the Earth: A Brief Review and Census of Intermittent Intense Sources
- Solar X-ray Flare Hazards on the Surface of Mars
Cited by in corpus (20)
- Planets Across Space and Time (PAST). I. Characterizing the Memberships of Galactic Components and Stellar Ages: Revisiting the Kinematic Methods and Applying to Planet Host Stars
- Active Galactic Nuclei: Boon or Bane for Biota?
- Propulsion of Spacecrafts to Relativistic Speeds Using Natural Astrophysical Sources
- Contact Inequality -- First Contact Will Likely Be With An Older Civilization
- The Habitability of the Galactic Bulge
- The best place and time to live in the Milky Way
- Comparative analysis of the influence of Sgr A* and nearby active galactic nuclei on the mass loss of known exoplanets
- Eta-Earth Revisited II: Deriving a Maximum Number of Earth-like Habitats in the Galactic Disk
- The Impact of Tidal Disruption Events on Galactic Habitability
- The impact of AGN outflows on the surface habitability of terrestrial planets in the Milky Way
- The Habitability of Large Elliptical Galaxies
- Impact of an Active Sgr A* on the Synthesis of Water and Organic Molecules Throughout the Milky Way
- 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
- Artificial Broadcasts as Galactic Populations: I. A Point Process Formalism for Extraterrestrial Intelligences and Their Broadcasts
- Constraints on the abundance of stellar engines in the Milky Way
- On the relative importance of AGN winds for the evolution of exoplanet atmospheres
- The Fermi paradox: Impact of astrophysical processes and dynamical evolution
- How black hole activity may influence exoplanetary evolution in our Galaxy
- Islands of Electromagnetic Tranquility in Our Galactic core and Little Red Dots that Shelter Molecules and Prebiotic Chemistry