This thesis is a description of how knowledge of atomic physics can be used in a stellar spectrum analysis. Stellar investigations are spectroscopically performed based on wavelengths, intensities and spectral line structure. Properties such as isotopic shifts, hyperfine structure, Zeeman effect, line blending and spectral line broadening are investigated in stellar spectra to improve results of abundance investigation but also to extract additional information from the stellar spectrum about subjects such as stellar magnetic field strength and isotopic mixture in the stellar photosphere. Zeeman effect is investigated and a simple technique to measure stellar magnetic fields in Ap/Bp stars is developed. Hyperfine structure and isotope shift...
Context. Fundamental atomic transition parameters, such as oscillator strengths and rest wavelengths...
Magnetic fields and stellar spots can alter the equivalent widths of absorption lines in stellar spe...
Context. Fundamental atomic transition parameters, such as oscillator strengths and rest wavelengths...
Accurate atomic transition data are crucial input parameters for the modelling of stars. The fundame...
International audienceThe spectrum emitted by a star is determined by the conditions where the photo...
International audienceThe spectrum emitted by a star is determined by the conditions where the photo...
Investigation of astrophysical plasmas, such as stellar atmospheres, require both knowledge of atomi...
High-precision spectroscopy of large stellar samples plays a crucial role for several topical issues...
International audienceThe spectrum emitted by a star is determined by the conditions where the photo...
The advancing resolution of modern spectrometers uncovers increasingly detailed spectral features in...
Context. We describe the atomic and molecular data that were used for the abundance analyses of FGK-...
Context. Fundamental atomic parameters, such as oscillator strengths, play a key role in modelling a...
Context. We describe the atomic and molecular data that were used for the abundance analyses of FGK-...
Context. We describe the atomic and molecular data that were used for the abundance analyses of FGK-...
11th International Colloquium on Atomic Spectra and Oscillator Strengths for Astrophysical and Labor...
Context. Fundamental atomic transition parameters, such as oscillator strengths and rest wavelengths...
Magnetic fields and stellar spots can alter the equivalent widths of absorption lines in stellar spe...
Context. Fundamental atomic transition parameters, such as oscillator strengths and rest wavelengths...
Accurate atomic transition data are crucial input parameters for the modelling of stars. The fundame...
International audienceThe spectrum emitted by a star is determined by the conditions where the photo...
International audienceThe spectrum emitted by a star is determined by the conditions where the photo...
Investigation of astrophysical plasmas, such as stellar atmospheres, require both knowledge of atomi...
High-precision spectroscopy of large stellar samples plays a crucial role for several topical issues...
International audienceThe spectrum emitted by a star is determined by the conditions where the photo...
The advancing resolution of modern spectrometers uncovers increasingly detailed spectral features in...
Context. We describe the atomic and molecular data that were used for the abundance analyses of FGK-...
Context. Fundamental atomic parameters, such as oscillator strengths, play a key role in modelling a...
Context. We describe the atomic and molecular data that were used for the abundance analyses of FGK-...
Context. We describe the atomic and molecular data that were used for the abundance analyses of FGK-...
11th International Colloquium on Atomic Spectra and Oscillator Strengths for Astrophysical and Labor...
Context. Fundamental atomic transition parameters, such as oscillator strengths and rest wavelengths...
Magnetic fields and stellar spots can alter the equivalent widths of absorption lines in stellar spe...
Context. Fundamental atomic transition parameters, such as oscillator strengths and rest wavelengths...