Modelling the Milky Way's exoplanet population based on cosmological galaxy simulations
arXiv:2511.14704 · doi:10.1051/0004-6361/202557051
Abstract
In this paper we aim to simulate realistic exoplanet populations across different regions of the MW by combining state-of-the-art cosmological simulations of our Galaxy with exoplanet formation models and observations. We model the exoplanet populations around single stars, using planet occurrence rates and multiplicity depending on stellar mass, metallicity, and planet type, and assign them physical parameters such as mass and orbital period. Focussing first on the solar vicinity, we find mostly metallicity-driven differences in the distributions of non-hosting and planet-hosting single stars. In our simulated solar neighbourhood, 52.5% of all planets are Earth-like (23% of them located in the Habitable Zone), 44% are super-Earths/Neptunes, and 3.5% are giant planets. A comparison with the census of Kepler exoplanets and candidates shows that, when taking into account the most relevant selection effects, we obtain a similar distribution of exoplanets compared to the observed population. However, we also detect significant differences in the exoplanet and host star distributions (e.g. more planets around F-type and red-giant stars compared to observations) that we attribute mostly to a too strong recent star formation and a too large disc scale height in the simulation, as well as to some caveats in our exoplanet population synthesis that will be addressed in future work. Extending our analysis to other regions of the simulated MW and to other simulated galaxies, we find that the relative percentages of planet types remain largely consistent as long as the simulated galaxy matches the morphology and mass of the MW. We have created a fast and flexible framework to produce exoplanet populations based on MW-like simulations that can easily be adapted to produce predictions for the yields of future exoplanet detection missions. (abridged)
13 pages, 12 figures, accepted in A&A
References in corpus (30)
- The NumPy array: a structure for efficient numerical computation
- The Gaia mission
- The K2 Mission: Characterization and Early results
- A terrestrial planet candidate in a temperate orbit around Proxima Centauri
- How to Characterize Habitable Worlds and Signs of Life
- The Occurrence of Rocky Habitable Zone Planets Around Solar-Like Stars from Kepler Data
- Constraining the thermally pulsing asymptotic giant branch phase with resolved stellar populations in the Large Magellanic Cloud
- YBC, a stellar bolometric corrections database with variable extinction coefficients: an application to PARSEC isochrones
- The California-Kepler Survey. X. The Radius Gap as a Function of Stellar Mass, Metallicity, and Age
- The Hestia project: simulations of the Local Group
- Exploring the alpha-enhancement of metal-poor planet-hosting stars. The Kepler and HARPS samples
- The First Circumbinary Planet Found by Microlensing: OGLE-2007-BLG-349L(AB)c
- New Grids of Pure-Hydrogen White-Dwarf NLTE Model Atmospheres \newline and the HST/STIS Flux Calibration
- TOI-1338: TESS' First Transiting Circumbinary Planet
- Reconstructing the Disrupted Dwarf Galaxy -Sausage/Enceladus Using its Stars and Globular Clusters
- On the "Galactic Habitable Zone"
- A Tale of Two Disks: Mapping the Milky Way with the Final Data Release of APOGEE
- The BEBOP radial-velocity survey for circumbinary planets I. Eight years of CORALIE observations of 47 single-line eclipsing binaries and abundance constraints on the masses of circumbinary planets
- From super-Earths to sub-Neptunes: Observational constraints and connections to theoretical models
- A self-consistent dynamical model of the Milky Way disc adjusted to Gaia data
- Exoplanets in the Galactic context: Planet occurrence rates in the thin disk, thick disk and stellar halo of Kepler stars
- BEBOP III. Observations and an independent mass measurement of Kepler-16 (AB) b -- the first circumbinary planet detected with radial velocities
- Dissecting the Gaia HR diagram within 200 pc
- How the origin of stars in the Galaxy impacts the composition of planetary building blocks
- Chemical Composition Of Bright Stars In The Northern Hemisphere: Star-Planet Connection
- Which stars can form planets: Planetesimal formation at low metallicities
- Eta-Earth Revisited II: Deriving a Maximum Number of Earth-like Habitats in the Galactic Disk
- Architecture Classification for Extrasolar Planetary Systems
- Detailed abundance trends in the inner Galactic bulge
- Solar System Migration Points to a Renewed Concept: Galactic Habitable Orbits