We present chemical abundance measurements of three stars in the ultrafaint dwarf galaxy Horologium I, a Milky Way satellite discovered by the Dark Energy Survey. Using high-resolution spectroscopic observations, we measure the metallicity of the three stars, as well as abundance ratios of several α-elements, iron-peak elements, and neutron-capture elements. The abundance pattern is relatively consistent among all three stars, which have a low average metallicity of [Fe/H] ~ −2.6 and are not α-enhanced ([α/Fe] ~ 0.0). This result is unexpected when compared to other low-metallicity stars in the Galactic halo and other ultrafaint dwarfs and suggests the possibility of a different mechanism for the enrichment of Hor I compared to other satell...
International audienceContext. Metal-poor components of dwarf galaxies around the Milky Way could be...
Context. Low-mass dwarf spheroidal galaxies are key objects for our understanding of the chemical ev...
6We present detailed chemical element abundance ratios of 17 elements with eight ≤ Z ≤ 60 in three...
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 ...
International audienceWe present chemical abundance measurements of three stars in the ultra-faintdw...
FINEP - FINANCIADORA DE ESTUDOS E PROJETOSFAPERJ - FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DO RIO DE...
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 ...
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...
Context. Ultra-faint dwarf galaxies recently discovered around the Milky Way (MW) contain extremely ...
We present chemical abundance measurements of two metal-poor red giant stars in the ultra-faint dwar...
We present chemical abundance measurements of two metal-poor red giant stars in the ultra-faint dwar...
We present the first detailed chemical abundance study of the ultra-faint dwarf galaxy Tucana II, ba...
International audienceContext. Metal-poor components of dwarf galaxies around the Milky Way could be...
Context. Low-mass dwarf spheroidal galaxies are key objects for our understanding of the chemical ev...
6We present detailed chemical element abundance ratios of 17 elements with eight ≤ Z ≤ 60 in three...
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 ...
International audienceWe present chemical abundance measurements of three stars in the ultra-faintdw...
FINEP - FINANCIADORA DE ESTUDOS E PROJETOSFAPERJ - FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DO RIO DE...
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 ...
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...
Context. Ultra-faint dwarf galaxies recently discovered around the Milky Way (MW) contain extremely ...
We present chemical abundance measurements of two metal-poor red giant stars in the ultra-faint dwar...
We present chemical abundance measurements of two metal-poor red giant stars in the ultra-faint dwar...
We present the first detailed chemical abundance study of the ultra-faint dwarf galaxy Tucana II, ba...
International audienceContext. Metal-poor components of dwarf galaxies around the Milky Way could be...
Context. Low-mass dwarf spheroidal galaxies are key objects for our understanding of the chemical ev...
6We present detailed chemical element abundance ratios of 17 elements with eight ≤ Z ≤ 60 in three...