Where are the extremely metal-poor stars in the Milky Way and Andromeda? Expectations from TNG50
arXiv:2211.00087 · doi:10.1093/mnras/stac3554
Abstract
We analyse the location of extremely metal-poor stars (EMPs, [Fe/H]) in 198 Milky Way (MW)/M31-like galaxies at in the TNG50 simulation. Each system is divided into four kinematically-defined morphological stellar components based on stellar circularity and galactocentric distance, namely bulge, cold disk, warm disk, and stellar halo, in addition to satellites (with stellar mass ). According to TNG50 and across all simulated systems, the stellar halo of the main galaxy and satellites present the highest frequency of EMPs (largest -to- stellar mass ratio), and thus the highest chances of finding them. Such frequency is larger in lower-mass than high-mass satellites. Moreover, TNG50 predicts that the stellar halo of the main galaxy always hosts and thus contributes the majority of the EMPs of the system. Namely, it has the highest mass ratio of EMPs in it to all the EMPs in the system (largest -to-). However, notably, we also find that 33 MW/M31-like galaxies in TNG50 have cold disks that contribute more than 10 per cent to the total EMP mass, each with of EMPs in cold circular orbits. These qualitative statements do not depend on the precise definition of EMP stars, i.e. on the adopted metallicity threshold. The results of this work provide a theoretical prediction for the location of EMP stars from both a spatial and kinematic perspective and across an unprecedented number of well-resolved MW/M31-like systems.
Part of a set of papers based on TNG50 MW/M31-like galaxies. 14 pages, 9 figures. Accepted manuscript by MNRAS
References in corpus (53)
- SciPy 1.0--Fundamental Algorithms for Scientific Computing in Python
- Array Programming with NumPy
- Simulating galaxy formation with black hole driven thermal and kinetic feedback
- The mass distribution and gravitational potential of the Milky Way
- The GALAH+ Survey: Third Data Release
- A Search for Stars of Very Low Metal Abundance. VI. Detailed Abundances of 313 Metal-Poor Stars
- An Objective Definition for the Main Sequence of Star-Forming Galaxies
- The long bar as seen by the VVV survey: I. Colour-magnitude diagrams
- The stellar mass-halo mass relation of isolated field dwarfs: a critical test of CDM at the edge of galaxy formation
- Quenched fractions in the IllustrisTNG simulations: comparison with observations and other theoretical models
- The Best and Brightest Metal-Poor Stars
- Constraining the primordial initial mass function with stellar archaeology
- Spatially Resolved Star Formation and Inside-out Quenching in the TNG50 Simulation and 3D-HST Observations
- Decoding the stellar fossils of the dusty Milky Way progenitors
- Gas-phase metallicity gradients of TNG50 star-forming galaxies
- The Pristine survey X: a large population of low-metallicity stars permeates the Galactic disk
- Recovery from population III supernova explosions and the onset of second generation star formation
- The oldest and most metal poor stars in the APOSTLE Local Group simulations
- NIHAO-UHD: The properties of MW-like stellar disks in high resolution cosmological simulations
- Faint Population III supernovae as the origin of the most iron-poor stars
- X-ray bubbles in the circumgalactic medium of TNG50 Milky Way- and M31-like galaxies: signposts of supermassive black hole activity
- The lowest detected stellar Fe abundance: The halo star SMSS J160540.18-144323.1
- The Transition from the First Stars to the Second Stars in the Early Universe
- The abundance of satellites around Milky Way- and M31-like galaxies with the TNG50 simulation: a matter of diversity
- Predicting the locations of possible long-lived low-mass first stars: Importance of satellite dwarf galaxies
- Observational Constraints on First-Star Nucleosynthesis. II. Spectroscopy of an Ultra Metal-Poor CEMP-no Star
- The Pristine survey VIII: The metallicity distribution function of the Milky Way halo down to the extremely metal-poor regime
- Reviving old controversies: is the early Galaxy flat or round? Investigations into the early phases of the Milky Way formation through stellar kinematics and chemical abundances
- Exploring the origin of low-metallicity stars in Milky Way-like galaxies with the NIHAO-UHD simulations
- Pristine IX: CFHT ESPaDOnS Spectroscopic Analysis of 115 Bright Metal-Poor Candidate Stars
- The Pristine survey III: Spectroscopic confirmation of an efficient search for extremely metal-poor stars
- The Spatial Distribution of the Galactic First Stars I: High-Resolution N-body Approach
- The cumulative star-formation histories of dwarf galaxies with TNG50. I: Environment-driven diversity and connection to quenching
- The merger and assembly histories of Milky Way- and M31-like galaxies with TNG50: disk survival through mergers
- The Pristine Inner Galaxy Survey (PIGS) II: Uncovering the most metal-poor populations in the inner Milky Way
- The COMBS Survey -- II. Distinguishing the Metal-Poor Bulge from the Halo Interlopers
- Stellar Metallicities from SkyMapper Photometry II: Precise photometric metallicities of 280,000 giant stars with [Fe/H] in the Milky Way
- Identifying kinematic structures in simulated galaxies using unsupervised machine learning
- Mass of the dynamically hot inner stellar halo predicts the ancient accreted stellar mass
- The Pristine survey -- XII: Gemini-GRACES chemo-dynamical study of newly discovered extremely metal-poor stars in the Galaxy
- Simulated Bars May Be Shorter But Are Not Slower Than Observed: TNG50 vs. MaNGA
- The Pristine Inner Galaxy Survey (PIGS) III: carbon-enhanced metal-poor stars in the bulge
- The chemical abundance pattern of the extremely metal-poor thin disk star 2MASS J1808-5104 and its origins
- Metal Mixing in Minihalos: The Descendants of Pair-Instability Supernovae
- On the formation of massive quiescent galaxies with diverse morphologies in the TNG50 simulation
- The Metal-Poor Metallicity Distribution of the Ancient Milky Way
- Mono-enriched stars and Galactic chemical evolution -- Possible biases in observations and theory
- Using the Multi-Object Adaptive Optics demonstrator RAVEN to observe metal-poor stars in and towards the Galactic Centre
- Seeding the second star -- II. CEMP star formation enriched from faint supernovae
- The Pristine survey XIV: chemical analysis of two ultra-metal-poor stars
- Formation and fate of low metallicity stars in IllustrisTNG50
- First results from SMAUG: Insights into star formation conditions from spatially-resolved ISM properties in TNG50
- On the robustness of the velocity anisotropy parameter in probing the stellar kinematics in Milky Way like galaxies: Take away from TNG50 simulation
Cited by in corpus (5)
- The energy distribution of the first supernovae
- A-SLOTH reveals the nature of the first stars
- First estimate of the local value of the baryonic streaming velocity
- On the likelihoods of finding very metal-poor (and old) stars in the Milky Way's disc, bulge, and halo
- Disk flaring with TNG50: diversity across Milky Way and M31 analogs