Context. Chemically peculiar A-type (Ap) stars are a subgroup of the CP2 stars that exhibit anomalous overabundances of numerous elements, e.g. Fe, Cr, Sr, and rare earth elements. The pulsating subgroup of Ap stars, the roAp stars, present ideal laboratories to observe and model pulsational signatures, as well as the interplay of the pulsations with strong magnetic fields and vertical abundance gradients. Aims. Based on high-resolution spectroscopic observations and observed stellar energy distributions, we construct a self-consistent model atmosphere for the roAp star 10 Aquilae (HD 176232). It accounts for modulations of the temperature-pressure structure caused by vertical abundance gradients. We demonstrate that such an analysi...
We present an investigation of the magnetic field geometries and inhomogeneous distribution of chemi...
Context.In recent papers convincing evidence has been presented for chemical stratification in Ap s...
Context. The chemically peculiar stars of the upper main sequence represent a natural laboratory for...
Context. Chemically peculiar (CP) stars are unique natural laboratories for the investigation of the...
Context: High-resolution spectra of some chemically peculiar stars clearly demonstrate the presence ...
Time-resolved spectroscopic observations of non-radial oscillations in magnetic Ap stars reveal une...
We present the evidence for abundance stratification in the atmosphere of the rapidly oscillating Ap...
The rapidly oscillating Ap (roAp) star 10 Aql shows one of the lowest photometric pulsation amplitud...
Aims.We have investigated the structure of the pulsating atmosphere of one of the best studied rapi...
Context.High spectral resolution studies of cool Ap stars reveal conspicuous anomalies of the shape ...
Publisher's version/PDFContext. We present 31.2 days of nearly continuous MOST photometry of the rap...
Context.Historically, stellar model atmospheres with scaled solar abundances (for all elements heavi...
A high-resolution spectrum obtained with the UVES instrument at the ESO VLT is used to determine atm...
To reliably determine the spectroscopic signature of rapidly oscillating chemically peculiar (roAp) ...
Element abundances of three roAp stars, HD 166473, HD 203932, and HD 217522, were determined using K...
We present an investigation of the magnetic field geometries and inhomogeneous distribution of chemi...
Context.In recent papers convincing evidence has been presented for chemical stratification in Ap s...
Context. The chemically peculiar stars of the upper main sequence represent a natural laboratory for...
Context. Chemically peculiar (CP) stars are unique natural laboratories for the investigation of the...
Context: High-resolution spectra of some chemically peculiar stars clearly demonstrate the presence ...
Time-resolved spectroscopic observations of non-radial oscillations in magnetic Ap stars reveal une...
We present the evidence for abundance stratification in the atmosphere of the rapidly oscillating Ap...
The rapidly oscillating Ap (roAp) star 10 Aql shows one of the lowest photometric pulsation amplitud...
Aims.We have investigated the structure of the pulsating atmosphere of one of the best studied rapi...
Context.High spectral resolution studies of cool Ap stars reveal conspicuous anomalies of the shape ...
Publisher's version/PDFContext. We present 31.2 days of nearly continuous MOST photometry of the rap...
Context.Historically, stellar model atmospheres with scaled solar abundances (for all elements heavi...
A high-resolution spectrum obtained with the UVES instrument at the ESO VLT is used to determine atm...
To reliably determine the spectroscopic signature of rapidly oscillating chemically peculiar (roAp) ...
Element abundances of three roAp stars, HD 166473, HD 203932, and HD 217522, were determined using K...
We present an investigation of the magnetic field geometries and inhomogeneous distribution of chemi...
Context.In recent papers convincing evidence has been presented for chemical stratification in Ap s...
Context. The chemically peculiar stars of the upper main sequence represent a natural laboratory for...