The surface content of lithium (Li) and beryllium (Be) in stars can reveal important information about the temperature structure and physical processes in their interior regions. This study focuses on solar-type stars with a sample that is more precisely defined than done previously. Our selection of stars studied for Be is constrained by five parameters: mass, temperature, surface gravity, metallicity, and age to be similar to the Sun and is focussed on stars within +-0.02 of 1 M_sun. We have used the Keck I telescope with HIRES to obtain spectra of the Be II spectral region of 52 such stars at high spectral resolution ($\sim$45,000) and high signal-to-noise ratios. While the spread in Li in these stars is greater than a factor of 400, the...
The study of both Be and Li gives useful clues about stellar internal structure. Of particular inter...
The simultaneous investigation of Li and Be in stars is a powerful tool in the study of the evolutio...
The surface content of lithium (Li) and beryllium (Be) provides insight into the mixing and circulat...
Abstract. Lithium and beryllium are widely recognized as key elements for investigating the physics ...
Beryllium is not destroyed as easily as Li, so the abundances of Li and Be together can tell us more...
The study of both light elements Li and Be in open clusters of known properties can reveal the inter...
We present the results of an extensive search, conducted at the Canada-France-Hawaii 3.6-m tele-scop...
While there are many observations of Li in open clusters, there are very few of the companion light ...
We present a study of beryllium (Be) abundances in a large sample of field solar-type dwarfs and sub...
Light elements are important tracers of the internal stellar structure and kinematics. Li and Be are...
We have obtained the first beryllium measurements of late F/early G-type stars in the old open clust...
Original article can be found at : http://www.aanda.org/ Copyright The European Southern Observatory...
Lithium and beryllium are destroyed at different temperatures in stellar interiors. As such, their ...
Original article can be found at: http://www.aanda.org/--Copyright The European Southern Observatory...
International audienceContext. Previous analyses of lithium abundances in main sequence and red gian...
The study of both Be and Li gives useful clues about stellar internal structure. Of particular inter...
The simultaneous investigation of Li and Be in stars is a powerful tool in the study of the evolutio...
The surface content of lithium (Li) and beryllium (Be) provides insight into the mixing and circulat...
Abstract. Lithium and beryllium are widely recognized as key elements for investigating the physics ...
Beryllium is not destroyed as easily as Li, so the abundances of Li and Be together can tell us more...
The study of both light elements Li and Be in open clusters of known properties can reveal the inter...
We present the results of an extensive search, conducted at the Canada-France-Hawaii 3.6-m tele-scop...
While there are many observations of Li in open clusters, there are very few of the companion light ...
We present a study of beryllium (Be) abundances in a large sample of field solar-type dwarfs and sub...
Light elements are important tracers of the internal stellar structure and kinematics. Li and Be are...
We have obtained the first beryllium measurements of late F/early G-type stars in the old open clust...
Original article can be found at : http://www.aanda.org/ Copyright The European Southern Observatory...
Lithium and beryllium are destroyed at different temperatures in stellar interiors. As such, their ...
Original article can be found at: http://www.aanda.org/--Copyright The European Southern Observatory...
International audienceContext. Previous analyses of lithium abundances in main sequence and red gian...
The study of both Be and Li gives useful clues about stellar internal structure. Of particular inter...
The simultaneous investigation of Li and Be in stars is a powerful tool in the study of the evolutio...
The surface content of lithium (Li) and beryllium (Be) provides insight into the mixing and circulat...