Context. Observations at various wavelengths of late B-type stars exhibiting strong atmospheric overabundances of the chemical elements Hg and Mn indicate that these stars are frequently found in binary and multiple systems. Aims. We intend to study the multiplicity of this type of chemically peculiar stars, looking for visual companions in the range of angular separation between 0″̣05 and 8″. Methods. We carried out a survey of 56 stars using diffraction-limited near-infrared imaging with NAOS-CONICA at the VLT. Results. Thirty-three companion candidates in 24 binaries, three triples, and one quadruple system were detected. Nine companion candidates were found for the first time in this study. Five objects ar...
We present new orbits for sixteen Ap spectroscopic binaries, four of which might in fact be Am stars...
Context. Mercury-manganese (HgMn) stars are a class of slowly rotating chemically peculiar main-sequ...
We report the detection of three mercury-manganese stars in the Orion OB1 association. HD 37886 and ...
Context. Observations at various wavelengths of late B-type stars exhibiting strong atmospheric ove...
Recently, with the goal to study multiplicity of chemically peculiar stars, we carried out a survey ...
The most distinctive feature of HgMn stars is the extreme overabundance of heavy elements in their a...
Context. In recent years, HgMn stars have attracted attention after in several of them surface chemi...
We report on a detailed abundance study of six bright, mostly southern, slowly rotating late B stars...
International audienceWe report on a detailed abundance study of six bright, mostly southern, slowly...
The discovery of exotic abundances, chemical inhomogeneities, and weak magnetic fields on the surfac...
To check if the multiplicity is a determinant parameter for abundance peculiarities determined for t...
International audienceWhile monitoring a sample of apparently slowly rotating superficially normal b...
54 pages, accepted in The Astronomical Journal. arXiv admin note: substantial text overlap with arXi...
The relationship between the HgMn and Am classes of chemically peculiar stars has been investigated ...
We investigate the multiplicity as a function of stellar mass. For this purpose we have created thre...
We present new orbits for sixteen Ap spectroscopic binaries, four of which might in fact be Am stars...
Context. Mercury-manganese (HgMn) stars are a class of slowly rotating chemically peculiar main-sequ...
We report the detection of three mercury-manganese stars in the Orion OB1 association. HD 37886 and ...
Context. Observations at various wavelengths of late B-type stars exhibiting strong atmospheric ove...
Recently, with the goal to study multiplicity of chemically peculiar stars, we carried out a survey ...
The most distinctive feature of HgMn stars is the extreme overabundance of heavy elements in their a...
Context. In recent years, HgMn stars have attracted attention after in several of them surface chemi...
We report on a detailed abundance study of six bright, mostly southern, slowly rotating late B stars...
International audienceWe report on a detailed abundance study of six bright, mostly southern, slowly...
The discovery of exotic abundances, chemical inhomogeneities, and weak magnetic fields on the surfac...
To check if the multiplicity is a determinant parameter for abundance peculiarities determined for t...
International audienceWhile monitoring a sample of apparently slowly rotating superficially normal b...
54 pages, accepted in The Astronomical Journal. arXiv admin note: substantial text overlap with arXi...
The relationship between the HgMn and Am classes of chemically peculiar stars has been investigated ...
We investigate the multiplicity as a function of stellar mass. For this purpose we have created thre...
We present new orbits for sixteen Ap spectroscopic binaries, four of which might in fact be Am stars...
Context. Mercury-manganese (HgMn) stars are a class of slowly rotating chemically peculiar main-sequ...
We report the detection of three mercury-manganese stars in the Orion OB1 association. HD 37886 and ...