The surface magnetic field strengths observed in the magnetic Ap, Bp stars (100-20000 G) and in the high field magnetic white dwarfs (106-109 G) cover many decades but nevertheless the range of magnetic fluxes observed in each of these stellar groups is similar. An evolutionary link between them therefore appears plausible. For both groups of stars there is also information on field complexity. The magnetic white dwarfs in general show non-dipole field structures which can be best modelled if we assume contributions from higher order multipoles. The field structures of the Ap and Bp stars are similarly complex. We investigate the hypothesis that the magnetic fields of the white dwarfs could be fossil remnants from the main-sequence phase by...
Context.About 5% of upper main sequence stars are permeated by a strong magnetic field, the origin o...
International audienceMagnetic fields have been detected in most if not all types of stars across th...
A significant fraction of white dwarfs harbour a magnetic field with strengths ranging from a few kG...
The magnetic white dwarfs (MWDs) are found either isolated or in interacting binaries. The isolated ...
Isolated magnetic white dwarfs have field strengths ranging from 10(3)G to 10(9) G, and constitute a...
Recent spectropolarimetric observations of Ap and Bp stars with improved sensitivity have suggested ...
There are no known examples of magnetic white dwarfs with fields larger than ∼ 3 MG paired with a no...
in this paper, we show that the range in magnetic fluxes that is observed in the chemicafly peculiar...
Magnetic fields are present in roughly 10% of white dwarfs. These fields affect the structure and ev...
The origin of magnetic fields in white dwarfs remains a fundamental unresolved problem in stellar as...
A small fraction of the population of intermediate-mass and massive stars host strong and stable mag...
White dwarfs with surface magnetic fields in excess of 1 MG are found as isolated single stars and r...
A dynamo mechanism driven by differential rotation when stars merge has been proposed to explain the...
In this paper we review the current status of research on the observational and theoretical characte...
© 2018 The Author(s). Published by Oxford University Press on behalf of the Royal Astronomical Socie...
Context.About 5% of upper main sequence stars are permeated by a strong magnetic field, the origin o...
International audienceMagnetic fields have been detected in most if not all types of stars across th...
A significant fraction of white dwarfs harbour a magnetic field with strengths ranging from a few kG...
The magnetic white dwarfs (MWDs) are found either isolated or in interacting binaries. The isolated ...
Isolated magnetic white dwarfs have field strengths ranging from 10(3)G to 10(9) G, and constitute a...
Recent spectropolarimetric observations of Ap and Bp stars with improved sensitivity have suggested ...
There are no known examples of magnetic white dwarfs with fields larger than ∼ 3 MG paired with a no...
in this paper, we show that the range in magnetic fluxes that is observed in the chemicafly peculiar...
Magnetic fields are present in roughly 10% of white dwarfs. These fields affect the structure and ev...
The origin of magnetic fields in white dwarfs remains a fundamental unresolved problem in stellar as...
A small fraction of the population of intermediate-mass and massive stars host strong and stable mag...
White dwarfs with surface magnetic fields in excess of 1 MG are found as isolated single stars and r...
A dynamo mechanism driven by differential rotation when stars merge has been proposed to explain the...
In this paper we review the current status of research on the observational and theoretical characte...
© 2018 The Author(s). Published by Oxford University Press on behalf of the Royal Astronomical Socie...
Context.About 5% of upper main sequence stars are permeated by a strong magnetic field, the origin o...
International audienceMagnetic fields have been detected in most if not all types of stars across th...
A significant fraction of white dwarfs harbour a magnetic field with strengths ranging from a few kG...