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The chemical characterisation of halo substructure in the Milky Way based on APOGEE

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arxiv 2204.04233 v2 pith:OTBJNJFD submitted 2022-04-08 astro-ph.GA

classification astro-ph.GA
keywords substructureshalochemicalheraclesmilkystatisticallystudiedtextit
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abstract

Galactic haloes in a $\Lambda$-CDM universe are predicted to host today a swarm of debris resulting from cannibalised dwarf galaxies. The chemo-dynamical information recorded in their stellar populations helps elucidate their nature, constraining the assembly history of the Galaxy. Using data from APOGEE and \textit{Gaia}, we examine the chemical properties of various halo substructures, considering elements that sample various nucleosynthetic pathways. The systems studied are Heracles, \textit{Gaia}-Enceladus/Sausage (GES), the Helmi stream, Sequoia, Thamnos, Aleph, LMS-1, Arjuna, I'itoi, Nyx, Icarus, and Pontus. Abundance patterns of all substructures are cross-compared in a statistically robust fashion. Our main findings include: {\it i)} the chemical properties of most substructures studied match qualitatively those of dwarf Milky Way satellites, such as the Sagittarius dSph. Exceptions are Nyx and Aleph, which are chemically similar to disc stars, implying that these substructures were likely formed \textit{in situ}; {\it ii)} Heracles differs chemically from {\it in situ} populations such as Aurora and its inner halo counterparts in a statistically significant way. The differences suggest that the star formation rate was lower in Heracles than in the early Milky Way; {\it iii)} the chemistry of Arjuna, LMS-1, and I'itoi is indistinguishable from that of GES, suggesting a possible common origin; {\it iv)} all three Sequoia samples studied are qualitatively similar. However, only two of those samples present chemistry that is consistent with GES in a statistically significant fashion; {\it v)} the abundance patterns of the Helmi stream and Thamnos are different from all other halo substructures.

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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. Magnesium isotope ratios in Milky Way and dwarf galaxy stars

    astro-ph.GA 2026-07 conditional novelty 7.0 of 10

    Magnesium isotope ratios in Milky Way and accreted dwarf galaxy stars trace a single universal enrichment track when plotted against [Mg/H], despite differences at fixed [Fe/H].

  2. Unveiling the formation channels of stellar halos through their chemical fingerprints

    astro-ph.GA 2024-12 conditional novelty 6.0 of 10

    Using the CIELO simulations, the authors find that stellar halos are dominated by stars accreted from satellites, with metallicity rising with halo mass and the alpha-to-iron ratio tracing satellite star formation histories.

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