The discovery of exotic abundances, chemical inhomogeneities, and weak magnetic fields on the surface of late B-type primaries in spectroscopic binaries has important implications not only for our understanding of the formation mechanisms of stars with Hg and Mn peculiarities themselves, but also for the general understanding of B-type star formation in binary systems. The origin of the abundance anomalies observed in late B-type stars with HgMn peculiarity is still poorly understood. The connection between HgMn peculiarity and membership in binary and multiple systems is supported by our observations during the last decade. The important result achieved in our studies of a large sample of HgMn stars is the finding that most HgMn stars exhi...
Context. Chemically peculiar stars of the mercury-manganese (HgMn) type represent a new cl...
Context. The nature of non-variable high-excitation emission lines detected in the optical spectra o...
The most distinctive feature of HgMn stars is the extreme overabundance of heavy elements in their a...
peer reviewedThe discovery of exotic abundances, chemical inhomogeneities, and weak magnetic fields ...
Context. The frequent presence of weak magnetic fields on the surface of spotted late-B stars with H...
Mercury-manganese (HgMn) stars belong to the class of chemically peculiar (CP) stars. It was recentl...
Context. Mercury-manganese (HgMn) stars have been considered as non-magnetic and non-variable chemic...
We present the results of a high spectral resolution study of the eclipsing binary AR Aur. AR Aur is...
Context. A subclass of the upper main-sequence chemically peculiar stars, mercury-manganese (HgMn) s...
Context. The frequent presence of weak magnetic fields on the surface of spotted late-B st...
Our recent studies of late B-type stars with HgMn peculiarity revealed for the first time the presen...
We present the results of a high spectral resolution study of the eclipsing binary AR Aur. AR Aur is...
Context. According to our current understanding, a subclass of the upper main-sequence che...
AR Aur is the only eclipsing binary known to contain a HgMn star, making it an ideal case for a deta...
We present the results of a high spectral resolution study of a few spectroscopic binaries with HgMn...
Context. Chemically peculiar stars of the mercury-manganese (HgMn) type represent a new cl...
Context. The nature of non-variable high-excitation emission lines detected in the optical spectra o...
The most distinctive feature of HgMn stars is the extreme overabundance of heavy elements in their a...
peer reviewedThe discovery of exotic abundances, chemical inhomogeneities, and weak magnetic fields ...
Context. The frequent presence of weak magnetic fields on the surface of spotted late-B stars with H...
Mercury-manganese (HgMn) stars belong to the class of chemically peculiar (CP) stars. It was recentl...
Context. Mercury-manganese (HgMn) stars have been considered as non-magnetic and non-variable chemic...
We present the results of a high spectral resolution study of the eclipsing binary AR Aur. AR Aur is...
Context. A subclass of the upper main-sequence chemically peculiar stars, mercury-manganese (HgMn) s...
Context. The frequent presence of weak magnetic fields on the surface of spotted late-B st...
Our recent studies of late B-type stars with HgMn peculiarity revealed for the first time the presen...
We present the results of a high spectral resolution study of the eclipsing binary AR Aur. AR Aur is...
Context. According to our current understanding, a subclass of the upper main-sequence che...
AR Aur is the only eclipsing binary known to contain a HgMn star, making it an ideal case for a deta...
We present the results of a high spectral resolution study of a few spectroscopic binaries with HgMn...
Context. Chemically peculiar stars of the mercury-manganese (HgMn) type represent a new cl...
Context. The nature of non-variable high-excitation emission lines detected in the optical spectra o...
The most distinctive feature of HgMn stars is the extreme overabundance of heavy elements in their a...