International audienceContext. The isotope abundances provide powerful diagnostics of the chemical enrichment in our Galaxy. The star HD 140283 is one of the best-studied very metal-poor dwarf stars. It is very old, and the chemical abundance in this star is a good witness of the chemical composition of the matter in the early Galaxy.Aims. The aim of this work is to measure the precise abundances of carbon, nitrogen, oxygen, and mainly the 12 C/ 13 C isotopic ratio in this very old metal-poor star in order to have a good reference for the computations of the chemical evolution of the Galaxy.Methods. We used very high spectral resolution data, with extremely high signal-to-noise ratios obtained with the spectrographs ESPaDOnS at the CFHT, ES...
Carbon and oxygen isotope ratios are excellent measures of nuclear processing, but few such data hav...
Carbon and oxygen isotope ratios are excellent measures of nuclear processing, but few suc...
Context.The formation scenario of the Galactic thick disk is an unresolved problem. Chemical abunda...
International audienceContext. The isotope abundances provide powerful diagnostics of the chemical e...
International audienceContext. The isotope abundances provide powerful diagnostics of the chemical e...
Context. The isotope abundances provide powerful diagnostics of the chemical enrichment in our Galax...
Context. The isotope abundances provide powerful diagnostics of the chemical enrichment in our Galax...
Context. HD 140283 is a reference subgiant that is metal poor and confirmed to be a very old star. T...
Context. HD 140283 is a reference subgiant that is metal poor and confirmed to be a very old star. T...
Low-mass M dwarfs represent the most common outcome of star formation, but their complex emergent sp...
Context. HD 140283 is a nearby (V = 7.7) subgiant metal-poor star, extensively analysed in the liter...
Context. Barium stars are moderately rare, chemically peculiar objects, which are believed to be the...
Carbon and oxygen isotope ratios are excellent measures of nuclear processing, but few suc...
Carbon and oxygen isotope ratios are excellent measures of nuclear processing, but few suc...
Context. HD 140283 is a nearby (V = 7.7) subgiant metal-poor star, extensively analysed in the liter...
Carbon and oxygen isotope ratios are excellent measures of nuclear processing, but few such data hav...
Carbon and oxygen isotope ratios are excellent measures of nuclear processing, but few suc...
Context.The formation scenario of the Galactic thick disk is an unresolved problem. Chemical abunda...
International audienceContext. The isotope abundances provide powerful diagnostics of the chemical e...
International audienceContext. The isotope abundances provide powerful diagnostics of the chemical e...
Context. The isotope abundances provide powerful diagnostics of the chemical enrichment in our Galax...
Context. The isotope abundances provide powerful diagnostics of the chemical enrichment in our Galax...
Context. HD 140283 is a reference subgiant that is metal poor and confirmed to be a very old star. T...
Context. HD 140283 is a reference subgiant that is metal poor and confirmed to be a very old star. T...
Low-mass M dwarfs represent the most common outcome of star formation, but their complex emergent sp...
Context. HD 140283 is a nearby (V = 7.7) subgiant metal-poor star, extensively analysed in the liter...
Context. Barium stars are moderately rare, chemically peculiar objects, which are believed to be the...
Carbon and oxygen isotope ratios are excellent measures of nuclear processing, but few suc...
Carbon and oxygen isotope ratios are excellent measures of nuclear processing, but few suc...
Context. HD 140283 is a nearby (V = 7.7) subgiant metal-poor star, extensively analysed in the liter...
Carbon and oxygen isotope ratios are excellent measures of nuclear processing, but few such data hav...
Carbon and oxygen isotope ratios are excellent measures of nuclear processing, but few suc...
Context.The formation scenario of the Galactic thick disk is an unresolved problem. Chemical abunda...