Context. Most studies devoted to Herbig Ae/Be stars (HAeBes) assume solar metallicity. However, the stellar metallicity, [M/H], is a fundamental parameter that can strongly differ depending on the source and may have important implications for planet formation. It has been proposed that the deficit of refractory elements observed in the surfaces of some HAeBes may be linked to the presence of cavities in their disks and is likely caused by Jovian planets that trap the metal-rich content. Aims. This work aims to provide a robust test on the previous proposal by analyzing the largest sample of HAeBes characterized by homogeneously derived [M/H] values and stellar and circumstellar properties. Methods. The spectra of 67 HAeBes, along with thei...
International audienceAims. We seek to constrain the formation of the Galactic bulge by analysing th...
Context. The mass accretion rate (Ṁacc) is a key parameter that has not accurately been determined f...
Context. Our Galaxy is composed of different stellar populations with varying chemical abundances, w...
Context. Most studies devoted to Herbig Ae/Be stars (HAeBes) assume solar metallicity. However, the ...
(Abridged) The stellar metallicity, [M/H], may have important implications for planet formation. In ...
Context. Herbig Ae/Be stars (HAeBes) have so far been studied based on relatively small samples that...
Protoplanetary disks orbiting intermediate-mass stars, Herbig Ae/Be stars, that have formed in a met...
Context. Abundances of beryllium in metal-poor stars scale linearly with metallicity down to [Fe/H] ...
In this paper we present stellar parameters and metallicities, obtained from a detailed spectroscopi...
Context. Recent metallicity determinations in young open clusters and star-forming regions suggest t...
Context. Herbig Ae stars (HAe) are the precursors of Vega-type systems, hence crucial objects in pla...
3 pages ; to appear in the proceedings of the Sapporo meeting on active OB stars ; ASP Conference Se...
Context. Most of our current understanding of the planet formation mechanism is based on the planet ...
Around 2% of all A stars have photospheres depleted in refractory elements. This is hypothesised to ...
We have derived beryllium abundances in a wide sample of stars hosting planets, with spectral type...
International audienceAims. We seek to constrain the formation of the Galactic bulge by analysing th...
Context. The mass accretion rate (Ṁacc) is a key parameter that has not accurately been determined f...
Context. Our Galaxy is composed of different stellar populations with varying chemical abundances, w...
Context. Most studies devoted to Herbig Ae/Be stars (HAeBes) assume solar metallicity. However, the ...
(Abridged) The stellar metallicity, [M/H], may have important implications for planet formation. In ...
Context. Herbig Ae/Be stars (HAeBes) have so far been studied based on relatively small samples that...
Protoplanetary disks orbiting intermediate-mass stars, Herbig Ae/Be stars, that have formed in a met...
Context. Abundances of beryllium in metal-poor stars scale linearly with metallicity down to [Fe/H] ...
In this paper we present stellar parameters and metallicities, obtained from a detailed spectroscopi...
Context. Recent metallicity determinations in young open clusters and star-forming regions suggest t...
Context. Herbig Ae stars (HAe) are the precursors of Vega-type systems, hence crucial objects in pla...
3 pages ; to appear in the proceedings of the Sapporo meeting on active OB stars ; ASP Conference Se...
Context. Most of our current understanding of the planet formation mechanism is based on the planet ...
Around 2% of all A stars have photospheres depleted in refractory elements. This is hypothesised to ...
We have derived beryllium abundances in a wide sample of stars hosting planets, with spectral type...
International audienceAims. We seek to constrain the formation of the Galactic bulge by analysing th...
Context. The mass accretion rate (Ṁacc) is a key parameter that has not accurately been determined f...
Context. Our Galaxy is composed of different stellar populations with varying chemical abundances, w...