Aims. We present abundance analysis based on high resolution spectra of 105 isolated red giant branch (RGB) stars in the Galactic Globular Cluster NGC 6121 (M 4). Our aim is to study its star population in the context of the multi-population phenomenon recently discovered to affect some Globular Clusters. Methods. The data have been collected with FLAMES+UVES, the multi-fiber high resolution facility at the ESO/VLT@UT2 telescope. Analysis was performed under LTE approximation for the following elements: O, Na, Mg, Al, Si, Ca, Ti, Cr, Fe, Ni, Ba, and NLTE corrections were applied to those (Na, Mg) strongly affected by departure from LTE. Spectroscopic data were coupled with high-precision wide-field UBVIC photometry from WFI@2.2 m telescope ...
We have carried out high-precision photometry on a large number of archival Hubble Space Telescope i...
International audienceWe used the multifiber spectrograph FLAMES on the ESO Very Large Telescope UT2...
International audienceWe used the multifiber spectrograph FLAMES on the ESO Very Large Telescope UT2...
Aims: We present abundance analysis based on high resolution spectra of 105 isolated red giant branc...
Aims. We present abundance analysis based on high resolution spectra of 105 isolated red giant bran...
Aims. We present abundance analysis based on high resolution spectra of 105 isolated red giant bran...
We present a photometric and spectroscopic study of multiple populations along the asymptotic giant ...
Galactic globular clusters (GCs) are now known to harbour multiple stellar populations, which are ch...
Aims. We investigate the Na abundance distribution of asymptotic giant branch (AGB) stars in Galacti...
Context. The stellar abundances observed in globular clusters show complex structures, currently not...
Abundances of O, Fe, Al, Mg, Na and Li determined from high-resolutionand high signal-to-noise spect...
We present chemical abundance analysis of a sample of 15 red giant branch (RGB) stars of the globula...
We present chemical abundance analysis of a sample of 15 red giant branch (RGB) stars of the globula...
International audienceWe used the multifiber spectrograph FLAMES on the ESO Very Large Telescope UT2...
Context. Galactic globular clusters (GC) are known to have multiple stellar populations and be chara...
We have carried out high-precision photometry on a large number of archival Hubble Space Telescope i...
International audienceWe used the multifiber spectrograph FLAMES on the ESO Very Large Telescope UT2...
International audienceWe used the multifiber spectrograph FLAMES on the ESO Very Large Telescope UT2...
Aims: We present abundance analysis based on high resolution spectra of 105 isolated red giant branc...
Aims. We present abundance analysis based on high resolution spectra of 105 isolated red giant bran...
Aims. We present abundance analysis based on high resolution spectra of 105 isolated red giant bran...
We present a photometric and spectroscopic study of multiple populations along the asymptotic giant ...
Galactic globular clusters (GCs) are now known to harbour multiple stellar populations, which are ch...
Aims. We investigate the Na abundance distribution of asymptotic giant branch (AGB) stars in Galacti...
Context. The stellar abundances observed in globular clusters show complex structures, currently not...
Abundances of O, Fe, Al, Mg, Na and Li determined from high-resolutionand high signal-to-noise spect...
We present chemical abundance analysis of a sample of 15 red giant branch (RGB) stars of the globula...
We present chemical abundance analysis of a sample of 15 red giant branch (RGB) stars of the globula...
International audienceWe used the multifiber spectrograph FLAMES on the ESO Very Large Telescope UT2...
Context. Galactic globular clusters (GC) are known to have multiple stellar populations and be chara...
We have carried out high-precision photometry on a large number of archival Hubble Space Telescope i...
International audienceWe used the multifiber spectrograph FLAMES on the ESO Very Large Telescope UT2...
International audienceWe used the multifiber spectrograph FLAMES on the ESO Very Large Telescope UT2...