A key aspect in the determination of stellar properties is the comparison of observational constraints with predictions from stellar models. Asteroseismic Inference on a Massive Scale (AIMS) is an open source code that uses Bayesian statistics and a Markov Chain Monte Carlo approach to find a representative set of models that reproduce a given set of classical and asteroseismic constraints. These models are obtained by interpolation on a pre-calculated grid, thereby increasing computational efficiency. We test the accuracy of the different operational modes within AIMS for grids of stellar models computed with the Liège stellar evolution code (main sequence and red giants) and compare the results to those from another asteroseismic analysis...
Aims: We aim to perform a theoretical investigation on the direct impact of measurement errors in th...
Asteroseismology has provided precise methods for stellar parameters estimation (e.g. mass, radius...
Copyright © The European Southern Observatory (ESO)Context. In the context of the space-based missio...
International audienceA key aspect in the determination of stellar properties is the comparison of o...
A key aspect in the determination of stellar properties is the comparison of observational constrain...
International audienceThe goal of AIMS is to estimate stellar parameters and credible intervals/erro...
The Asteroseismic Inference on a Massive Scale (AIMS) program is designed to estimate stellar proper...
Context. Detailed oscillation spectra comprising individual frequencies for numerous solar-type star...
Asteroseismic parameters allow us to measure the basic stellar properties of field giants observed f...
Context. Seismic parameters such as the large Δ[SUB]0[/SUB] and small δ[SUB]02[/SUB] frequency separ...
WOS: 000344141500013Recently the number of main-sequence and subgiant stars exhibiting solar-like os...
Accurate and precise determination of the global properties, such as ages and masses of stars, is ...
Recently the number of main-sequence and subgiant stars exhibiting solar-like oscillations that are ...
Context. The availability of high-quality astero-seismological data provided by satellite missions s...
Context. Stellar properties and, in particular stellar radii of exoplanet host stars, are ...
Aims: We aim to perform a theoretical investigation on the direct impact of measurement errors in th...
Asteroseismology has provided precise methods for stellar parameters estimation (e.g. mass, radius...
Copyright © The European Southern Observatory (ESO)Context. In the context of the space-based missio...
International audienceA key aspect in the determination of stellar properties is the comparison of o...
A key aspect in the determination of stellar properties is the comparison of observational constrain...
International audienceThe goal of AIMS is to estimate stellar parameters and credible intervals/erro...
The Asteroseismic Inference on a Massive Scale (AIMS) program is designed to estimate stellar proper...
Context. Detailed oscillation spectra comprising individual frequencies for numerous solar-type star...
Asteroseismic parameters allow us to measure the basic stellar properties of field giants observed f...
Context. Seismic parameters such as the large Δ[SUB]0[/SUB] and small δ[SUB]02[/SUB] frequency separ...
WOS: 000344141500013Recently the number of main-sequence and subgiant stars exhibiting solar-like os...
Accurate and precise determination of the global properties, such as ages and masses of stars, is ...
Recently the number of main-sequence and subgiant stars exhibiting solar-like oscillations that are ...
Context. The availability of high-quality astero-seismological data provided by satellite missions s...
Context. Stellar properties and, in particular stellar radii of exoplanet host stars, are ...
Aims: We aim to perform a theoretical investigation on the direct impact of measurement errors in th...
Asteroseismology has provided precise methods for stellar parameters estimation (e.g. mass, radius...
Copyright © The European Southern Observatory (ESO)Context. In the context of the space-based missio...