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The Extremely Metal Rich Knot of Stars at the Heart of the Galaxy

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arxiv 2406.01706 v1 pith:W2NRHSOI submitted 2024-06-03 astro-ph.GA

classification astro-ph.GA
keywords starsknotmilkycentralconfinedmetal-richgalaxyonly
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We show with Gaia XP spectroscopy that extremely metal-rich stars in the Milky Way (EMR; $[M/H]_{XP} > 0.5$) - but only those - are largely confined to a tight "knot" at the center of the Galaxy. This EMR knot is round in projection, has a fairly abrupt edge near $\sim 1.5$kpc, and is a dynamically hot system. This central knot also contains very metal-rich (VMR; $+0.2\le [M/H]_{XP} \le +0.4$) stars. However, in contrast to EMR stars, the bulk of VMR stars form an extended, highly flattened distribution in the inner Galaxy ($R_{\mathrm{GC}}\lesssim 5$ kpc). We draw on TNG50 simulations of Milky Way analogs for context and find that compact, metal-rich knots confined to $<1.5$kpc are a universal feature. In typical simulated analogs, the top 5-10% most metal-rich stars are confined to a central knot; however, in our Milky Way data this fraction is only 0.1%. Dust-penetrating wide-area near-infrared spectroscopy, such as SDSS-V, will be needed for a rigorous estimate of the fraction of stars in the Galactic EMR knot. Why in our Milky Way only EMR giants are confined to such a central knot remains to be explained. Remarkably, the central few kiloparsecs of the Milky Way harbor both the highest concentration of metal-poor stars (the `poor old heart') and almost all EMR stars. This highlights the stellar population diversity at the bottom of galactic potential wells.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. PANTERA. I. Hunting for the Most Metal-Rich Stars in the Solar Neighborhood with High-Resolution Spectroscopy

    astro-ph.SR 2026-07 conditional novelty 6.0 of 10

    Gaia XP photometric metallicities overpredict iron abundance by ~0.16 dex for cool metal-rich giants, yet the sample still contains 25 ultra-metal-rich stars up to [Fe/H]=+0.58.

  2. Impact of <3D> NLTE on GCE of oxygen with the RAdial Velocity Experiment

    astro-ph.GA 2025-05 conditional novelty 6.0 of 10

    Oxygen abundances from the 8446 Å triplet in RAVE spectra, computed with <3D> NLTE spectral fitting, show a flattened [O/Fe] trend at super-solar [Fe/H].

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