The surface abundance structure of seven elements of the brightest chemically peculiar A-type star, ϵ Ursae Majoris (ϵ UMa, HD 112185, HR 4905) has been determined. Cr, Fe and, Mn are enhanced at the magnetic polar region of ϵ UMa while they avoid the magnetic equator. Sr seems to behave like Cr, Fe, and Mn, but is concentrated only at one of the two magnetic poles. Ti, in contrast, is accumulated at the magnetic equator and is depleted where Cr and Fe are accumulated, in accordance with theoretical predictions. Mg and Ca do not correlate with the distribution of Cr, Fe, Mn, and Sr or with Ti. The surface distribution of Mn, Sr, Ti, and Mg was determined for the first time for this star. A Doppler Imaging code was used that allows...
Context. A new generation of powerful and efficient spectropolarimeters has recently been used to pr...
Aims. We present a magnetic Doppler imaging study from all Stokes parameters of the cool, chemically...
Context. Intermediate-mass, magnetic chemically peculiar (Ap) stars provide a unique opportunity to ...
We investigate magnetic field geometry and surface distribution of chemical elements in the rapidly ...
Context. In atmospheres of magnetic main-sequence stars, the diffusion of chemical elements leads to...
Context. Intermediate-mass, chemically peculiar stars with strong magnetic fields provide an excelle...
Context. Intermediate-mass, chemically peculiar stars with strong magnetic fields provide an excelle...
Our knowledge of stellar magnetic fields relies almost entirely on circular polarization observation...
Aims. We present a magnetic Doppler imaging study from all Stokes parameters of the cool, chemically...
Context. The presence of abundance inhomogeneities in the atmospheres of chemically peculiar Ap star...
International audienceContext. The brightest magnetic chemically peculiar stars θ Aur and ɛ UMa were...
In a previous paper we presented an updated magnetic field map for the chemically pe-culiar star α2 ...
Context. The brightest magnetic chemically peculiar stars θ Aur and ε UMa were targeted by numerous ...
We used the new magnetic Doppler Imaging code to reconstruct the magnetic field geometry and surface...
We present a Doppler Image of the oxygen abundance distribution over the surface of the star θ Au...
Context. A new generation of powerful and efficient spectropolarimeters has recently been used to pr...
Aims. We present a magnetic Doppler imaging study from all Stokes parameters of the cool, chemically...
Context. Intermediate-mass, magnetic chemically peculiar (Ap) stars provide a unique opportunity to ...
We investigate magnetic field geometry and surface distribution of chemical elements in the rapidly ...
Context. In atmospheres of magnetic main-sequence stars, the diffusion of chemical elements leads to...
Context. Intermediate-mass, chemically peculiar stars with strong magnetic fields provide an excelle...
Context. Intermediate-mass, chemically peculiar stars with strong magnetic fields provide an excelle...
Our knowledge of stellar magnetic fields relies almost entirely on circular polarization observation...
Aims. We present a magnetic Doppler imaging study from all Stokes parameters of the cool, chemically...
Context. The presence of abundance inhomogeneities in the atmospheres of chemically peculiar Ap star...
International audienceContext. The brightest magnetic chemically peculiar stars θ Aur and ɛ UMa were...
In a previous paper we presented an updated magnetic field map for the chemically pe-culiar star α2 ...
Context. The brightest magnetic chemically peculiar stars θ Aur and ε UMa were targeted by numerous ...
We used the new magnetic Doppler Imaging code to reconstruct the magnetic field geometry and surface...
We present a Doppler Image of the oxygen abundance distribution over the surface of the star θ Au...
Context. A new generation of powerful and efficient spectropolarimeters has recently been used to pr...
Aims. We present a magnetic Doppler imaging study from all Stokes parameters of the cool, chemically...
Context. Intermediate-mass, magnetic chemically peculiar (Ap) stars provide a unique opportunity to ...