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LMC Stars and Where to Find Them: Inferring Birth Radii for External Galaxies

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arxiv 2312.07219 v1 pith:LWTSGQ36 submitted 2023-12-12 astro-ph.GA

classification astro-ph.GA
keywords birthgalaxiesradiistarsexternalindividualinferinferring
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abstract

It is well known that stars move away from their birth location over time via radial migration. This dynamical process makes computing the correct chemical evolution, e.g., metallicity gradients, of galaxies very difficult. This dynamical process makes inferring the chemical evolution of observed galaxies from their measured abundance gradients very difficult. One way to account for radial migration is to infer stellar birth radii for individual stars. Many attempts to do so have been performed over the last years, but are limited to the Milky Way as computing the birth position of stars requires precise measurements of stellar metallicity and age for individual stars that cover large Galactic radii. Fortunately, recent and future surveys will provide numerous opportunities for inferring birth radii for external galaxies such as the Large Magellanic Cloud (LMC). In this paper, we investigate the possibility of doing so using the NIHAO cosmological zoom-in simulations. We find that it is theoretically possible to infer birth radii with a ~ 25% median uncertainty for individual stars in galaxies with i) orderliness of the orbits, $\langle v_\phi \rangle/\sigma_{v} >$ 2, ii) a dark matter halo mass greater or equal to approximately the LMC mass (~ 2 x 10$^{11} M_\odot$), and iii) after the average azimuthal velocity of the stellar disk reaches ~70% of its maximum. From our analysis, we conclude that it is possible and useful to infer birth radii for the LMC and other external galaxies that satisfy the above criteria.

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Cited by 1 Pith paper

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  1. Str\"omgren photometric metallicity map of the Magellanic Cloud stars using Gaia DR3--XP spectra

    astro-ph.GA 2025-06 conditional novelty 6.0 of 10

    Gaia DR3 XP synthetic Strömgren photometry, recalibrated with APOGEE, yields [Fe/H] maps and piecewise radial metallicity gradients for about 270,000 RGB and 90,000 supergiant stars in the LMC and SMC.

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