APOGEE chemical abundances of stars in the MW satellites Fornax, Sextans, Draco and Carina
arXiv:2511.06820 · doi:10.1051/0004-6361/202555822
Abstract
During its evolution, the Milky Way (MW) incorporated numerous dwarf galaxies, particularly low-mass systems. The surviving dwarf galaxies orbiting the MW serve as exceptional laboratories for studying the unique properties of these systems. Their metal-poor environments and shallow gravitational potentials likely drive significant differences in star formation and star cluster properties compared to those in the MW. Using high-quality near-infrared spectra from the APOGEE survey, we determined abundances of Fe, C, N, O, Mg, Al, Si, Ca, Ti, Cr, Mn, Ni, and Ce for 74 stars in four MW satellite dwarf galaxies: Fornax, Sextans, Draco, and Carina. Our analysis reveals that the distribution of elements (e.g., [Si/Fe]) strongly correlates with galaxy luminosity (and hence mass), underscoring the critical role of galaxy mass in shaping chemical evolution. These dwarf galaxies exhibit [Al/Fe, which is comparable to those of the metal-poor stars in the MW. Additionally, we identified nitrogen-rich field stars in the Fornax dwarf galaxy, which display distinct metallicities compared to its known globular clusters (GCs). If these stars originated in GCs and subsequently escaped, their presence suggests we are observing relics of destroyed GCs, offering possible evidence of cluster disruption.
A&A submitted around June 2025, accepted in March 2026
References in corpus (50)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Galactic chemical evolution: Carbon through Zinc
- The Dawes Review 2: Nucleosynthesis and stellar yields of low and intermediate-mass single stars
- Evidence for Two Early Accretion Events That Built the Milky Way Stellar Halo
- The Star Formation Histories of Local Group Dwarf Galaxies I. Hubble Space Telescope / Wide Field Planetary Camera 2 Observations
- A Search for Stars of Very Low Metal Abundance. VI. Detailed Abundances of 313 Metal-Poor Stars
- Identification of strontium in the merger of two neutron stars
- The nucleosynthesis of Al26 and Fe60 in solar metallicity stars extending in mass from 11 to 120 Msun: the hydrostatic and explosive contributions
- First stars VI - Abundances of C, N, O, Li, and mixing in extremely metal-poor giants. Galactic evolution of the light elements
- A new implementation of the infrared flux method using the 2MASS catalogue
- The DART imaging and CaT survey of the Fornax Dwarf Spheroidal Galaxy
- Galactic Chemical Evolution and solar s-process abundances: dependence on the 13C-pocket structure
- Evidence from APOGEE for the presence of a major building block of the halo buried in the inner Galaxy
- NLTE abundances of Mn in a sample of metal-poor stars
- Tracing chemical evolution over the extent of the Milky Way's Disk with APOGEE Red Clump Stars
- APOGEE Chemical Abundance Patterns of the Massive Milky Way Satellites
- Exploring Anticorrelations and Light Element Variations in Northern Globular Clusters Observed by the APOGEE Survey
- New H-band Stellar Spectral Libraries for the SDSS-III/APOGEE survey
- VLT/UVES Spectroscopy of Individual Stars in Three Globular Clusters in the Fornax Dwarf Spheroidal Galaxy
- The GALAH Survey: Non-LTE departure coefficients for large spectroscopic surveys
- Final Targeting Strategy for the SDSS-IV APOGEE-2S Survey
- Final Targeting Strategy for the SDSS-IV APOGEE-2N Survey
- Globular Clusters in Coma Cluster Ultra Diffuse Galaxies (UDGs): Evidence for Two Types of UDG?
- APOGEE Chemical Abundances of the Sagittarius Dwarf Galaxy
- Atypical Mg-poor Milky Way field stars with globular cluster second-generation like chemical patterns
- Elemental Abundances in M31: The Kinematics and Chemical Evolution of Dwarf Spheroidal Satellite Galaxies
- NLTE for APOGEE: Simultaneous Multi-Element NLTE Radiative Transfer
- The Gaia-ESO Survey: A globular cluster escapee in the Galactic halo
- Chemodynamics of newly identified giants with globular cluster like abundance patterns in the bulge, disk, and halo of the Milky Way
- Two Groups of Red Giants with Distinct Chemical Abundances in the Bulge Globular Cluster NGC 6553 Through the Eyes of APOGEE
- Chemical evolution of ultra-faint dwarf galaxies in the self-consistently calculated IGIMF theory
- The star formation history of the Sculptor dwarf spheroidal galaxy
- The chemical composition of globular clusters in the Local Group
- Simultaneous Constraints on the Star Formation History and Nucleosynthesis of Sculptor dSph
- Evidence for sub-Chandrasekhar Type Ia supernovae from the last major merger
- Formation of globular clusters in dwarf galaxies of the Local Group
- Galactic ArchaeoLogIcaL ExcavatiOns (GALILEO) I. An updated census of APOGEE N-rich giants across the Milky Way
- Search for globular clusters associated with the Milky Way dwarf galaxies using Gaia DR2
- APOGEE spectroscopic evidence for chemical anomalies in dwarf galaxies: The case of M~54 and Sagittarius
- Spectroscopic Confirmation of the Sixth Globular Cluster in the Fornax Dwarf Spheroidal Galaxy
- Discovery of a large population of Nitrogen-Enhanced stars in the Magellanic Clouds
- Rediscovery of the Sixth Star Cluster in the Fornax Dwarf Spheroidal Galaxy
- On the Chemical and Kinematic Consistency Between N-rich Metal-poor Field Stars and Enriched Populations in Globular Clusters
- Multiple stellar populations at less evolved stages: detection of chemical variations among main-sequence dwarfs in NGC 1978
- Near-infrared chemical abundances of stars in the Sculptor dwarf galaxy
- Multiple populations in low mass globular clusters: Palomar 13
- Chemical Tagging N-rich Field Stars with High-resolution Spectroscopy
- Probing 3D and NLTE models using APOGEE observations of globular cluster stars
- Multiple stellar populations in Schwarzschild modeling and the application to the Fornax dwarf
- Tidal mass loss in the Fornax dwarf spheroidal galaxy through N-body simulations with Gaia DR3-based orbits