The NIR Ca II triplet absorption lines have proven to be an important tool for quantitative spectroscopy of individual red giant branch stars in the Local Group, providing a better understanding of metallicities of stars in the Milky Way and dwarf galaxies and thereby an opportunity to constrain their chemical evolution processes. An interesting puzzle in this field is the significant lack of extremely metal-poor stars, below [Fe/H] = -3, found in classical dwarf galaxies around the Milky Way using this technique. The question arises whether these stars are really absent, or if the empirical Ca II triplet method used to study these systems is biased in the low-metallicity regime. Here we present results of synthetic spectral analysis of the...
Abstract For a sample of metal-poor stars (−3.3 ≤ [Fe/H] ≤ −2.2) that have high-resolution spectros...
Dwarf galaxies provide insight into the processes of star formation and chemical enrichment at the l...
Context. Individual stars in dwarf spheroidal galaxies around the Milky Way Galaxy have been studied...
The NIR Ca II triplet absorption lines have proven to be an important tool for quantitative spectros...
The NIR Ca II triplet absorption lines have proven to be an important tool for quantitative spectros...
The NIR Ca II triplet has proven to be an important tool for quantitative spectroscopy. Here we pres...
The NIR Ca II triplet has proven to be an important tool for quantitative spectroscopy. Here we pres...
After careful re-analysis of Ca II triplet calibration at low-metallicity, the classical satellites ...
The Ca ii H and K lines are among the few features available to infer the metallicity of extremely m...
We present new estimates of ages and metallicities, based on VLT FORS optical (4400–5500 A˚ ) spectr...
We present abundances for seven stars in the (extremely) low-metallicity tail of the Sculptor dwarf ...
We have obtained metallicities of ∼360 red giant stars distributed in 15 Small Magellanic Cloud (SMC...
Abstract For a sample of metal-poor stars (−3.3 ≤ [Fe/H] ≤ −2.2) that have high-resolution spectros...
Dwarf galaxies provide insight into the processes of star formation and chemical enrichment at the l...
Context. Individual stars in dwarf spheroidal galaxies around the Milky Way Galaxy have been studied...
The NIR Ca II triplet absorption lines have proven to be an important tool for quantitative spectros...
The NIR Ca II triplet absorption lines have proven to be an important tool for quantitative spectros...
The NIR Ca II triplet has proven to be an important tool for quantitative spectroscopy. Here we pres...
The NIR Ca II triplet has proven to be an important tool for quantitative spectroscopy. Here we pres...
After careful re-analysis of Ca II triplet calibration at low-metallicity, the classical satellites ...
The Ca ii H and K lines are among the few features available to infer the metallicity of extremely m...
We present new estimates of ages and metallicities, based on VLT FORS optical (4400–5500 A˚ ) spectr...
We present abundances for seven stars in the (extremely) low-metallicity tail of the Sculptor dwarf ...
We have obtained metallicities of ∼360 red giant stars distributed in 15 Small Magellanic Cloud (SMC...
Abstract For a sample of metal-poor stars (−3.3 ≤ [Fe/H] ≤ −2.2) that have high-resolution spectros...
Dwarf galaxies provide insight into the processes of star formation and chemical enrichment at the l...
Context. Individual stars in dwarf spheroidal galaxies around the Milky Way Galaxy have been studied...