Context. One of the possible mechanisms responsible for the panoply of shapes in planetary nebulae is the presence of magnetic fields that drive the ejection of ionized material during the proto-planetary nebula phase. Aims. Therefore, detecting magnetic fields in such objects is of key importance for understanding their dynamics. Still, magnetic fields have not been detected using polarimetry in the central stars of planetary nebulae. Methods. Circularly polarized light spectra have been obtained with the Focal Reducer and Low Dispersion Spectrograph at the Very Large Telescope of the European Southern Observatory and the Intermediate dispersion Spectrograph and Im...
We present ESO New Technology Telescope high-resolution echelle spectroscopy of the central stars (C...
For the past decade, observations of the alignment of planetary nebulae (PNe) symmetries with respec...
Many planetary nebulae have asymmetric winds, often forming bipolar outflow lobes or jets. One theor...
Context. One of the possible mechanisms responsible for the panoply of shapes in planetary...
Context. Most planetary nebulae have bipolar or other non-spherically symmetric shapes. Magnetic fie...
Context. It is not yet clear whether magnetic fields play an essential role in shaping planetary neb...
More than about twenty central stars of planetary nebulae (CSPN) have been observed spectropo-larime...
Context. Magnetic fields are thought to be one of the possible mechanisms responsible for shaping th...
The role of magnetic field in late type stars such as proto-planetary and planetary nebulae (PPNe/PN...
International audienceUsing spectropolarimetry, we investigate the large-scale magnetic topologies o...
We present ESO NTT high resolution echelle spectroscopy of the central stars (CSs) of eight southern...
This dissertation is aimed at the measurement and the characterization of stellar magnetic fields, w...
Magnetic fields appear ubiquitous throughout the envelopes of evolved stars. However, their origin a...
International audienceThe stellar magnetic field is a prime ingredient in the interactions between a...
A number of mechanisms, such as magnetic fields, (binary) companions and circumstellar disks have be...
We present ESO New Technology Telescope high-resolution echelle spectroscopy of the central stars (C...
For the past decade, observations of the alignment of planetary nebulae (PNe) symmetries with respec...
Many planetary nebulae have asymmetric winds, often forming bipolar outflow lobes or jets. One theor...
Context. One of the possible mechanisms responsible for the panoply of shapes in planetary...
Context. Most planetary nebulae have bipolar or other non-spherically symmetric shapes. Magnetic fie...
Context. It is not yet clear whether magnetic fields play an essential role in shaping planetary neb...
More than about twenty central stars of planetary nebulae (CSPN) have been observed spectropo-larime...
Context. Magnetic fields are thought to be one of the possible mechanisms responsible for shaping th...
The role of magnetic field in late type stars such as proto-planetary and planetary nebulae (PPNe/PN...
International audienceUsing spectropolarimetry, we investigate the large-scale magnetic topologies o...
We present ESO NTT high resolution echelle spectroscopy of the central stars (CSs) of eight southern...
This dissertation is aimed at the measurement and the characterization of stellar magnetic fields, w...
Magnetic fields appear ubiquitous throughout the envelopes of evolved stars. However, their origin a...
International audienceThe stellar magnetic field is a prime ingredient in the interactions between a...
A number of mechanisms, such as magnetic fields, (binary) companions and circumstellar disks have be...
We present ESO New Technology Telescope high-resolution echelle spectroscopy of the central stars (C...
For the past decade, observations of the alignment of planetary nebulae (PNe) symmetries with respec...
Many planetary nebulae have asymmetric winds, often forming bipolar outflow lobes or jets. One theor...