We report the first APOGEE metallicities and α-element abundances measured for 3600 red giant stars spanning a large radial range of both the Large (LMC) and Small Magellanic Clouds, the largest Milky Way (MW) dwarf galaxies. Our sample is an order of magnitude larger than that of previous studies and extends to much larger radial distances. These are the first results presented that make use of the newly installed southern APOGEE instrument on the du Pont telescope at Las Campanas Observatory. Our unbiased sample of the LMC spans a large range in metallicity, from [Fe/H] = -0.2 to very metal-poor stars with [Fe/H] ≈ -2.5, the most metal-poor Magellanic Cloud (MC) stars detected to date. The LMC [α/Fe]-[Fe/H] distribution is very flat over ...
We present a clean, magnitude-limited (IRAC1 or WISE1 ≤ 15.0 mag) multiwavelength source catalog for...
We present for the first time a detailed spectroscopic study of chemical element abundances of metal...
International audienceDespite its importance for understanding the nature of early stellar generatio...
We report the first APOGEE metallicities and alpha-element abundances measured for 3600 red giant st...
To date, the SDSS-IV APOGEE survey has obtained S/N > 70 spectra for over 2,500 red giant stars d...
The SDSS-IV Apache Point Observatory Galactic Evolution Experiment (APOGEE) survey has obtained high...
We aim to identify some of the first extremely metal-poor stars in the Large Magellanic Cloud (LMC) ...
We present results from the largest Ca ii triplet line metallicity study of Small Magellanic Cloud (...
The Small Magellanic Cloud is a close, irregular galaxy that has experienced a complex star formatio...
We report metallicities and radial velocities derived from spectra at the near-infrared calcium trip...
We have obtained metallicities from near-infrared calcium triplet spectroscopy for nearly a thousand...
We have obtained metallicities from near-infrared calcium triplet spectroscopy for nearly a thousand...
none4noWe have used high-resolution spectra obtained with the multifiber facility FLAMES at the Very...
Aims. This paper compares the chemical evolution of the Large Magellanic Cloud (LMC) to that of the ...
We present a clean, magnitude-limited (IRAC1 or WISE1 ≤ 15.0 mag) multiwavelength source catalog for...
We present for the first time a detailed spectroscopic study of chemical element abundances of metal...
International audienceDespite its importance for understanding the nature of early stellar generatio...
We report the first APOGEE metallicities and alpha-element abundances measured for 3600 red giant st...
To date, the SDSS-IV APOGEE survey has obtained S/N > 70 spectra for over 2,500 red giant stars d...
The SDSS-IV Apache Point Observatory Galactic Evolution Experiment (APOGEE) survey has obtained high...
We aim to identify some of the first extremely metal-poor stars in the Large Magellanic Cloud (LMC) ...
We present results from the largest Ca ii triplet line metallicity study of Small Magellanic Cloud (...
The Small Magellanic Cloud is a close, irregular galaxy that has experienced a complex star formatio...
We report metallicities and radial velocities derived from spectra at the near-infrared calcium trip...
We have obtained metallicities from near-infrared calcium triplet spectroscopy for nearly a thousand...
We have obtained metallicities from near-infrared calcium triplet spectroscopy for nearly a thousand...
none4noWe have used high-resolution spectra obtained with the multifiber facility FLAMES at the Very...
Aims. This paper compares the chemical evolution of the Large Magellanic Cloud (LMC) to that of the ...
We present a clean, magnitude-limited (IRAC1 or WISE1 ≤ 15.0 mag) multiwavelength source catalog for...
We present for the first time a detailed spectroscopic study of chemical element abundances of metal...
International audienceDespite its importance for understanding the nature of early stellar generatio...