Context. Abundance trends in heavier elements with evolutionary phase have been shown to exist in the globular cluster NGC6752 ([Fe/H] = −1.6). These trends are a result of atomic diffusion and additional (non-convective) mixing. Studying such trends can provide us with important constraints on the extent to which diffusion modifies the internal structure and surface abundances of solartype, metal-poor stars. Aims. Taking advantage of a larger data sample, we investigate the reality and the size of these abundance trends and address questions and potential biases associated with the various stellar populations that make up NGC6752. Methods. We perform an abundance analysis by combining photometric and spectroscopic data of 194 stars located...
International audienceAims. We attempt to constrain the efficiency of additional transport or mixing...
Chemical abundances for 15 elements (C, N, O, Na, Mg, Al, Si, K, Ca, Ti, V, Cr, Mn, Fe, and Ni) are ...
International audienceWe describe our latest investigation of stars in NGC 6397, as an update to Kor...
Context. Abundance trends in heavier elements with evolutionary phase have been shown to exist in th...
Context. Abundance trends in heavier elements with evolutionary phase have been shown to exist in th...
Context. Atomic diffusion in stars can create systematic trends of surface abundances with evolution...
International audienceWe present a homogeneous photometric and spectroscopic analysis of 18 stars al...
The predicted primordial lithium abundance differs from observations of unevolved halo stars on the ...
Context. Variations in chemical abundances with evolutionary phase have been identified in previous ...
Context. Atomic diffusion in stars can create systematic trends of surface abundances with evolution...
International audienceA homogeneous spectroscopic analysis of unevolved and evolved stars in the met...
Context. The prediction of the Planck-constrained primordial lithium abundance in the Universe is in...
© E. Semenova et al. 2020. Atomic diusion and mixing processes in stellar interiors influence the st...
International audienceThe measurement of the cosmic microwave background has strongly constrained th...
Context. The chemical compositions of globular clusters provide important information on t...
International audienceAims. We attempt to constrain the efficiency of additional transport or mixing...
Chemical abundances for 15 elements (C, N, O, Na, Mg, Al, Si, K, Ca, Ti, V, Cr, Mn, Fe, and Ni) are ...
International audienceWe describe our latest investigation of stars in NGC 6397, as an update to Kor...
Context. Abundance trends in heavier elements with evolutionary phase have been shown to exist in th...
Context. Abundance trends in heavier elements with evolutionary phase have been shown to exist in th...
Context. Atomic diffusion in stars can create systematic trends of surface abundances with evolution...
International audienceWe present a homogeneous photometric and spectroscopic analysis of 18 stars al...
The predicted primordial lithium abundance differs from observations of unevolved halo stars on the ...
Context. Variations in chemical abundances with evolutionary phase have been identified in previous ...
Context. Atomic diffusion in stars can create systematic trends of surface abundances with evolution...
International audienceA homogeneous spectroscopic analysis of unevolved and evolved stars in the met...
Context. The prediction of the Planck-constrained primordial lithium abundance in the Universe is in...
© E. Semenova et al. 2020. Atomic diusion and mixing processes in stellar interiors influence the st...
International audienceThe measurement of the cosmic microwave background has strongly constrained th...
Context. The chemical compositions of globular clusters provide important information on t...
International audienceAims. We attempt to constrain the efficiency of additional transport or mixing...
Chemical abundances for 15 elements (C, N, O, Na, Mg, Al, Si, K, Ca, Ti, V, Cr, Mn, Fe, and Ni) are ...
International audienceWe describe our latest investigation of stars in NGC 6397, as an update to Kor...