International audienceClassical Be stars are hot non-supergiant stars surrounded by a gaseous circumstellar disk that is responsible for the observed infrared (IR) excess and emission lines. The influence of binarity on these phenomena remains controversial. We followed the evolution of the environment surrounding the binary Be star $\delta$ Scorpii one year before and one year after the 2011 periastron to check for any evidence of a strong interaction between its companion and the primary circumstellar disk. We used the VLTI/AMBER spectro-interferometric instrument operating in the K band in high (12000) spectral resolution to obtain information on both the disk geometry and kinematics. Observations were carried out in two emission lines: ...
AcceptedInternational audienceContext. Classical Be stars are hot non-supergiant stars surrounded by...
International audienceWe measured the mid-infrared extension of the gaseous disk surrounding seven B...
Accepted by A&AAims. We study the Be star δ Cen circumstellar disk using long-baseline interferometr...
International audienceClassical Be stars are hot non-supergiant stars surrounded by a gaseous circum...
International audienceContext. Classical Be stars are hot non-supergiant stars surrounded by a gaseo...
A&A accepted paperClassical Be stars are hot non-supergiant stars surrounded by a gaseous circumstel...
We present the results of a spectroscopic monitoring program of the binary system Delta Scorpii, who...
Context. Classical Be stars are hot non-supergiant stars surrounded by a gaseous circumstellar disk ...
Mechanisms of the disk formation in Be stars may differ from one Be star to another, which may resul...
Mechanisms of the disk formation in Be stars may differ from one star to another and cause variation...
We present the results of a spectroscopic monitoring program of the binary system δ Scorpii, whose p...
We describe the results of the world-wide observing campaign of the highly eccentric Be binary syste...
Copyright © 2012 IOP Publishing / American Astronomical SocietyV921 Scorpii is a close binary system...
The bright star δ Sco has been considered a typical B0-type object for many years. Spectra of the st...
The highly eccentric Be binary system δ Sco reached periastron during early 2011 July, when the dist...
AcceptedInternational audienceContext. Classical Be stars are hot non-supergiant stars surrounded by...
International audienceWe measured the mid-infrared extension of the gaseous disk surrounding seven B...
Accepted by A&AAims. We study the Be star δ Cen circumstellar disk using long-baseline interferometr...
International audienceClassical Be stars are hot non-supergiant stars surrounded by a gaseous circum...
International audienceContext. Classical Be stars are hot non-supergiant stars surrounded by a gaseo...
A&A accepted paperClassical Be stars are hot non-supergiant stars surrounded by a gaseous circumstel...
We present the results of a spectroscopic monitoring program of the binary system Delta Scorpii, who...
Context. Classical Be stars are hot non-supergiant stars surrounded by a gaseous circumstellar disk ...
Mechanisms of the disk formation in Be stars may differ from one Be star to another, which may resul...
Mechanisms of the disk formation in Be stars may differ from one star to another and cause variation...
We present the results of a spectroscopic monitoring program of the binary system δ Scorpii, whose p...
We describe the results of the world-wide observing campaign of the highly eccentric Be binary syste...
Copyright © 2012 IOP Publishing / American Astronomical SocietyV921 Scorpii is a close binary system...
The bright star δ Sco has been considered a typical B0-type object for many years. Spectra of the st...
The highly eccentric Be binary system δ Sco reached periastron during early 2011 July, when the dist...
AcceptedInternational audienceContext. Classical Be stars are hot non-supergiant stars surrounded by...
International audienceWe measured the mid-infrared extension of the gaseous disk surrounding seven B...
Accepted by A&AAims. We study the Be star δ Cen circumstellar disk using long-baseline interferometr...