International audienceContext. During the transition from the asymptotic giant branch (AGB) to planetary nebulae (PN), the circumstellar geometry and morphology change dramatically. Another characteristic of this transition is the high mass-loss rate, that can be partially explained by radiation pressure and a combination of various factors, such as the stellar pulsation, the dust grain condensation, and opacity in the upper atmosphere. The magnetic field can also be one of the main ingredients that shapes the stellar upper atmosphere and envelope.Aims. Our main goal is to investigate for the first time the spatial distribution of the magnetic field in the envelope of IRC+10216. More generally we intend to determine the magnetic field stren...
Context.The photospheres of about 5–10% of the upper main sequence stars exhibit remarkable chemical...
This project is a multi-faceted approach to establish a link between proposed theories of star forma...
Aims. We report the detection of a magnetic field in the helium-strong star CPD −57° 3509 ...
International audienceContext. During the transition from the asymptotic giant branch (AGB) to plane...
International audienceDuring the transition from the Asymptotic Giant Branch (AGB) to Planetary Nebu...
International audienceDuring its quick transition to the Planetary Nebula stage, the Asymptotic Gian...
Context. Magnetic fields are thought to be one of the possible mechanisms responsible for shaping th...
The influence of themagnetic field on the stellar evolutions has still to be determined, particularl...
While several observational investigations have revealed the presence of magnetic fields in the circ...
International audienceAims: Magnetic fields play a primordial role in the star formation process. Th...
A number of mechanisms, such as magnetic fields, (binary) companions and circumstellar disks have be...
Context. Magnetic fields can significantly affect the star formation process. The theory of the magn...
Context. The majority of the observed planetary nebulae exhibit elliptical or bipolar structures. R...
The general evolution of stars with initial mass between 0.8 and 8 solar masses is believed to be we...
Context. It is not yet clear whether magnetic fields play an essential role in shaping planetary neb...
Context.The photospheres of about 5–10% of the upper main sequence stars exhibit remarkable chemical...
This project is a multi-faceted approach to establish a link between proposed theories of star forma...
Aims. We report the detection of a magnetic field in the helium-strong star CPD −57° 3509 ...
International audienceContext. During the transition from the asymptotic giant branch (AGB) to plane...
International audienceDuring the transition from the Asymptotic Giant Branch (AGB) to Planetary Nebu...
International audienceDuring its quick transition to the Planetary Nebula stage, the Asymptotic Gian...
Context. Magnetic fields are thought to be one of the possible mechanisms responsible for shaping th...
The influence of themagnetic field on the stellar evolutions has still to be determined, particularl...
While several observational investigations have revealed the presence of magnetic fields in the circ...
International audienceAims: Magnetic fields play a primordial role in the star formation process. Th...
A number of mechanisms, such as magnetic fields, (binary) companions and circumstellar disks have be...
Context. Magnetic fields can significantly affect the star formation process. The theory of the magn...
Context. The majority of the observed planetary nebulae exhibit elliptical or bipolar structures. R...
The general evolution of stars with initial mass between 0.8 and 8 solar masses is believed to be we...
Context. It is not yet clear whether magnetic fields play an essential role in shaping planetary neb...
Context.The photospheres of about 5–10% of the upper main sequence stars exhibit remarkable chemical...
This project is a multi-faceted approach to establish a link between proposed theories of star forma...
Aims. We report the detection of a magnetic field in the helium-strong star CPD −57° 3509 ...