Using heritability of stellar chemistry to reveal the history of the Milky Way
arXiv:2011.06453 · doi:10.1093/mnras/staa4028
Abstract
Since chemical abundances are inherited between generations of stars, we use them to trace the evolutionary history of our Galaxy. We present a robust methodology for creating a phylogenetic tree, a biological tool used for centuries to study heritability. Combining our phylogeny with information on stellar ages and dynamical properties, we reconstruct the shared history of 78 stars in the Solar Neighbourhood. The branching pattern in our tree supports a scenario in which the thick disk is an ancestral population of the thin disk. The transition from thick to thin disk shows an anomaly, which we attribute to a star formation burst. Our tree shows a further signature of the variability in stars similar to the Sun, perhaps linked to a minor star formation enhancement creating our Solar System. In this paper, we demonstrate the immense potential of a phylogenetic perspective and interdisciplinary collaboration, where with borrowed techniques from biology we can study key processes that have contributed to the evolution of the Milky Way.
submitted to MNRAS. comments welcomed
References in corpus (20)
- The mass distribution and gravitational potential of the Milky Way
- Galactic chemical evolution: Carbon through Zinc
- The Dawes Review 2: Nucleosynthesis and stellar yields of low and intermediate-mass single stars
- A Search for Stars of Very Low Metal Abundance. VI. Detailed Abundances of 313 Metal-Poor Stars
- High-precision abundances of elements in solar twin stars: Trends with stellar age and elemental condensation temperature
- The Ages of the Thin Disk, Thick Disk, and the Halo from Nearby White Dwarfs
- Abundance to age ratios in the HARPS-GTO sample with Gaia DR2: Chemical clocks for a range of [Fe/H]
- High-precision abundances of elements in solar-type stars. Evidence of two distinct sequences in abundance-age relations
- The GALAH Survey: Non-LTE departure coefficients for large spectroscopic surveys
- Two Disk Components from a Gas Rich Disk-Disk Merger
- The Gaia-ESO survey: the non-universality of the age-chemical-clocks-metallicity relations in the Galactic disc
- High-precision abundances of Sc, Mn, Cu, and Ba in solar twins. Trends of element ratios with stellar age
- High-precision abundances of elements in Kepler LEGACY stars. Verification of trends with stellar age
- Chemical evolution of the Milky Way: constraints on the formation of the thick and thin discs
- Revisiting long-standing puzzles of the Milky Way: the Sun and its vicinity as typical outer disk chemical evolution
- The effect of stellar migration on Galactic chemical evolution: a heuristic approach
- Cosmic phylogeny: reconstructing the chemical history of the solar neighbourhood with an evolutionary tree
- Differential abundances of open clusters and their tidal tails: chemical tagging and chemical homogeneity
- Yule-Simpson's paradox in Galactic Archaeology
- Traits for chemical evolution in solar twins: Trends of neutron-capture elements with stellar age