Context. Ultra-faint dwarf galaxies recently discovered around the Milky Way (MW) contain extremely metal-poor stars, and might represent the building blocks of low-metallicity components of the MW. Among them, the Bootes I dwarf spheroidal galaxy is of particular interest because of its exclusively old stellar population. Detailed chemical compositions of individual stars in this galaxy are a key to understanding formation and chemical evolution in the oldest galaxies in the Universe and their roles in building up the MW halo. Aims. Previous studies of the chemical abundances of Bootes I show discrepancies in elemental abundances between different authors, and thus a consistent picture of its chemical enrichment history has not yet been...
We present chemical abundance measurements of three stars in the ultrafaint dwarf galaxy Horologium ...
We present chemical abundance measurements of three stars in the ultrafaint dwarf galaxy Horologium ...
We present high-resolution Magellan/MIKE spectra of the four brightest confirmed red giant stars in ...
Context. Ultra-faint dwarf galaxies recently discovered around the Milky Way (MW) contain extremely ...
Context. Individual stars in dwarf spheroidal galaxies around the Milky Way Galaxy have been studied...
We present chemical abundance measurements of two metal-poor red giant stars in the ultra-faint dwar...
International audienceContext. Metal-poor components of dwarf galaxies around the Milky Way could be...
We present chemical abundance measurements of two metal-poor red giant stars in the ultra-faint dwar...
Context. Low-mass dwarf spheroidal galaxies are key objects for our understanding of the chemical ev...
Context.The formation scenario of the Galactic thick disk is an unresolved problem. Chemical abunda...
We present chemical abundance measurements of three stars in the ultrafaint dwarf galaxy Horologium ...
6We present detailed chemical element abundance ratios of 17 elements with eight ≤ Z ≤ 60 in three...
We present a chemical abundance study of the brightest confirmed member star of the ultra-faint dwar...
We present chemical abundance measurements of three stars in the ultrafaint dwarf galaxy Horologium ...
We present chemical abundance measurements of three stars in the ultrafaint dwarf galaxy Horologium ...
We present high-resolution Magellan/MIKE spectra of the four brightest confirmed red giant stars in ...
Context. Ultra-faint dwarf galaxies recently discovered around the Milky Way (MW) contain extremely ...
Context. Individual stars in dwarf spheroidal galaxies around the Milky Way Galaxy have been studied...
We present chemical abundance measurements of two metal-poor red giant stars in the ultra-faint dwar...
International audienceContext. Metal-poor components of dwarf galaxies around the Milky Way could be...
We present chemical abundance measurements of two metal-poor red giant stars in the ultra-faint dwar...
Context. Low-mass dwarf spheroidal galaxies are key objects for our understanding of the chemical ev...
Context.The formation scenario of the Galactic thick disk is an unresolved problem. Chemical abunda...
We present chemical abundance measurements of three stars in the ultrafaint dwarf galaxy Horologium ...
6We present detailed chemical element abundance ratios of 17 elements with eight ≤ Z ≤ 60 in three...
We present a chemical abundance study of the brightest confirmed member star of the ultra-faint dwar...
We present chemical abundance measurements of three stars in the ultrafaint dwarf galaxy Horologium ...
We present chemical abundance measurements of three stars in the ultrafaint dwarf galaxy Horologium ...
We present high-resolution Magellan/MIKE spectra of the four brightest confirmed red giant stars in ...