Evaluating Galactic Habitability Using High Resolution Cosmological Simulations of Galaxy Formation
arXiv:1511.01786 · doi:10.1017/S1473550415000518
Abstract
We present the first model that couples high-resolution simulations of the formation of Local Group galaxies with calculations of the galactic habitable zone (GHZ), a region of space which has sufficient metallicity to form terrestrial planets without being subject to hazardous radiation. These simulations allow us to make substantial progress in mapping out the asymmetric three-dimensional GHZ and its time evolution for the Milky Way (MW) and Triangulum (M33) galaxies, as opposed to works that generally assume an azimuthally symmetric GHZ. Applying typical habitability metrics to MW and M33, we find that while a large number of habitable planets exist as close as a few kiloparsecs from the galactic centre, the probability of individual planetary systems being habitable rises as one approaches the edge of the stellar disc. Tidal streams and satellite galaxies also appear to be fertile grounds for habitable planet formation. In short, we find that both galaxies arrive at similar GHZs by different evolutionary paths, as measured by the first and third quartiles of surviving biospheres. For the Milky Way, this interquartile range begins as a narrow band at large radii, expanding to encompass much of the galaxy at intermediate times before settling at a range of 2-13kpc. In the case of M33, the opposite behaviour occurs - the initial and final interquartile ranges are quite similar, showing gradual evolution. This suggests that galaxy assembly history strongly influences the time evolution of the GHZ, which will affect the relative time lag between biospheres in different galactic locations. We end by noting the caveats involved in such studies and demonstrate that high resolution cosmological simulations will play a vital role in understanding habitability on galactic scales, provided that these simulations accurately resolve chemical evolution.
24 pages, 33 figures, accepted for publication in the International Journal of Astrobiology
References in corpus (20)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- Short-Duration Gamma-Ray Bursts
- Prevalence of Earth-size planets orbiting Sun-like stars
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- Habitable Zones Around Main-Sequence Stars: Dependence on Planetary Mass
- The Progenitors of Type Ia Supernovae
- On the formation of terrestrial planets in hot-Jupiter systems
- On the "Galactic Habitable Zone"
- On the role of GRBs on life extinction in the Universe
- On The Timescale Forcing in Astrobiology
- A Continuum of Planet Formation Between 1 and 4 Earth Radii
- The galactic habitable zone of the Milky Way and M31 from chemical evolution models with gas radial flows
- Galaxy formation with radiative and chemical feedback
- Solar irradiance changes and photobiological effects at Earth's surface following astrophysical ionizing radiation events
- The Effect of Planetary Illumination on Climate Modelling of Earthlike Exomoons
- Electrostatic activation of prebiotic chemistry in substellar atmospheres
- Astrophysical Conditions for Planetary Habitability
- Colliding Winds in Low-Mass Binary Star Systems: wind interactions and implications for habitable planets
- Tracking Cluster Debris (TraCD)- I. Dissolution of clusters and searching the solar cradle
Cited by in corpus (20)
- Subsurface Exolife
- The Galactic habitable zone around M and FGK stars with chemical evolution models with dust
- Evaporation of planetary atmospheres due to XUV illumination by quasars
- A Statistical Estimation of the Occurrence of Extraterrestrial Intelligence in the Milky Way Galaxy
- Astrobiological Effects of Gamma-Ray Bursts in the Milky Way Galaxy
- Signal coverage approach to the detection probability of hypothetical extraterrestrial emitters in the Milky Way
- Exploring the Cosmic Evolution of Habitability with Galaxy Merger Trees
- The Habitability of the Galactic Bulge
- Advanced Aspects of the Galactic Habitability
- 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
- Galactic Habitability Re-Examined: Indications of Bimodality
- The impact of AGN outflows on the surface habitability of terrestrial planets in the Milky Way
- If Loud Aliens Explain Human Earliness, Quiet Aliens Are Also Rare
- Populating The Milky Way: Characterising Planet Demographics by Combining Galaxy Formation Simulations and Planet Population Synthesis Models
- The Drake Equation as a Function of Spectral Type and Time
- Shaping Galactic Habitability: the impact of stellar migration and gas giants
- Lethal radiation from nearby supernovae helps to explain the small cosmological constant
- Spectral Evidence of Solar Neighborhood Analogs in CALIFA Galaxies
- Rethinking Habitability using Biogenic Precursors: Formaldehyde in Millimeter Molecular Clouds of the Inner Galaxy