Context. Our Galaxy is composed of different stellar populations with varying chemical abundances, which are thought to imprint the composition of planet building blocks (PBBs). As such, the properties of stars should affect the properties of planets and small bodies formed in their systems. In this context, high-resolution spectroscopic surveys open a window into the chemical links between and their host stars. Aims. We aim to determine the PBB composition trends for various stellar populations across the Galaxy by comparing the two large spectroscopic surveys APOGEE and GALAH. We assess the reliability of the PBB composition as determined with these surveys with a propagation error study. Methods. Stellar spectroscopic abundances from the...
Spina, L., et al.Open clusters are unique tracers of the history of our own Galaxy's disc. According...
Context. Studies based on high-precision abundance determinations revealed that chemical patterns of...
Context. Metal-poor stars are key for studying the formation and evolution of the Galaxy. Evidence o...
Context . Our Galaxy is composed of different stellar populations with varying chemical abundances, ...
International audienceContext. Future space missions (TESS, CHEOPS, PLATO, and the JWST) will consid...
Context. The chemical composition of stars that have orbiting planets provides important clues about...
As stellar compositions evolve over time in the Milky Way, so will the resulting planet populations....
The imprints of stellar nucleosynthesis and chemical evolution of the galaxy can be seen in differen...
The composition of the protoplanetary disc is thought to be linked to the composition of the host st...
Connecting star and planet properties in a single model is not straightforward. Stellar population s...
Using data from the GALAH survey, we explore the dependence of elemental abundances on stellar age a...
Context. Detailed chemical abundance studies have revealed different trends between samples of plane...
Context. Studies based on high-precision abundance determinations revealed that chemical patterns of...
Spina, L., et al.Open clusters are unique tracers of the history of our own Galaxy's disc. According...
Context. Studies based on high-precision abundance determinations revealed that chemical patterns of...
Context. Metal-poor stars are key for studying the formation and evolution of the Galaxy. Evidence o...
Context . Our Galaxy is composed of different stellar populations with varying chemical abundances, ...
International audienceContext. Future space missions (TESS, CHEOPS, PLATO, and the JWST) will consid...
Context. The chemical composition of stars that have orbiting planets provides important clues about...
As stellar compositions evolve over time in the Milky Way, so will the resulting planet populations....
The imprints of stellar nucleosynthesis and chemical evolution of the galaxy can be seen in differen...
The composition of the protoplanetary disc is thought to be linked to the composition of the host st...
Connecting star and planet properties in a single model is not straightforward. Stellar population s...
Using data from the GALAH survey, we explore the dependence of elemental abundances on stellar age a...
Context. Detailed chemical abundance studies have revealed different trends between samples of plane...
Context. Studies based on high-precision abundance determinations revealed that chemical patterns of...
Spina, L., et al.Open clusters are unique tracers of the history of our own Galaxy's disc. According...
Context. Studies based on high-precision abundance determinations revealed that chemical patterns of...
Context. Metal-poor stars are key for studying the formation and evolution of the Galaxy. Evidence o...