© ESO 2018. Context. State of the art quantitative spectroscopy utilizes synthetic spectra to extract information from observations. For hot, massive stars, these synthetic spectra are calculated by means of 1D, spherically symmetric, NLTE atmosphere and spectrum-synthesis codes. Certain stellar atmospheres, however, show strong deviations from spherical symmetry, and need to be treated in 3D. Aims. We present and test a newly developed 3D radiative transfer code, tailored to the solution of the radiation field in rapidly expanding stellar atmospheres. We apply our code to the continuum transfer in wind-ablation models, and to the UV resonance line formation in magnetic winds. Methods. We have used a 3D finite-volume method for the solution...
Aims. We present the implementation of a radiative transfer solver with coherent scattering in the n...
Studying solar prominences is potentially of great interest in the field of “space weather ” but mod...
Aims. We present the implementation of a radiative transfer solver with coherent scattering in the n...
Context. State of the art quantitative spectroscopy utilizes synthetic spectra to extract informatio...
Context. Knowledge about hot, massive stars is usually inferred from quantitative spectroscopy. To a...
Higher resolution telescopes as well as 3D numerical simulations will require the development of det...
Radiative transfer is introduced as one of the grand challenge problems in astrophysics due to its k...
Radiative Transfer (RT) is considered to be one of the four Grand Challenges in Computational Astrop...
Title: Radiation in stellar winds. Resonance line formation in inhomogeneous hot star winds Author: ...
Context. The true mass-loss rates from massive stars are important for many branches of astrophysics...
Aims. We use our 3D radiative transfer framework to investigate how the presence of a parametrized s...
Context.Higher resolution telescopes as well as 3D numerical simulations will require the developme...
Aims. We investigate the effects of coherent isotropic continuum scattering on the formation of spec...
Context. For more than two decades, stellar atmosphere codes have been used to derive the stellar an...
Context. Multi-level non-local thermodynamic equilibrium (NLTE) radiation transfer calculations have...
Aims. We present the implementation of a radiative transfer solver with coherent scattering in the n...
Studying solar prominences is potentially of great interest in the field of “space weather ” but mod...
Aims. We present the implementation of a radiative transfer solver with coherent scattering in the n...
Context. State of the art quantitative spectroscopy utilizes synthetic spectra to extract informatio...
Context. Knowledge about hot, massive stars is usually inferred from quantitative spectroscopy. To a...
Higher resolution telescopes as well as 3D numerical simulations will require the development of det...
Radiative transfer is introduced as one of the grand challenge problems in astrophysics due to its k...
Radiative Transfer (RT) is considered to be one of the four Grand Challenges in Computational Astrop...
Title: Radiation in stellar winds. Resonance line formation in inhomogeneous hot star winds Author: ...
Context. The true mass-loss rates from massive stars are important for many branches of astrophysics...
Aims. We use our 3D radiative transfer framework to investigate how the presence of a parametrized s...
Context.Higher resolution telescopes as well as 3D numerical simulations will require the developme...
Aims. We investigate the effects of coherent isotropic continuum scattering on the formation of spec...
Context. For more than two decades, stellar atmosphere codes have been used to derive the stellar an...
Context. Multi-level non-local thermodynamic equilibrium (NLTE) radiation transfer calculations have...
Aims. We present the implementation of a radiative transfer solver with coherent scattering in the n...
Studying solar prominences is potentially of great interest in the field of “space weather ” but mod...
Aims. We present the implementation of a radiative transfer solver with coherent scattering in the n...