Binary stars are supposed to be chemically homogeneous, as they are born from the same molecular cloud. However, high precision chemical abundances show that some binary systems display chemical differences between the components, which could be due to planet accretion. In this work, we determine precise fundamental parameters and chemical abundances for the binary system HIP 71726/ HIP 71737. Our results show that the component HIP 71726 is more metal-rich than HIP 71737 in the refractory elements such as iron, with Δ[Fe/H] = 0,11 ±0,01 dex. Also, it has a lithium abundance ~1 dex higher than HIP 71737. The ingestion of ~10 Earth masses fully explains both the enhancement in refractory elements and the high lithium content observed in HIP...
Context. Binary systems with similar components are ideal laboratories that allow several physical p...
We present a uniform study of the chemical abundances of 12 elements (Si, Ca, Sc, Ti, V, Cr, Mn, Co,...
Aims.This work presents a uniform and homogeneous study of chemical abundances of refractory element...
Differences in the elemental abundances of planet-hosting stars in binary systems can give important...
Planetary engulfment events involve the chemical assimilation of a planet into a star’s external lay...
Aims. We aim to explore the possible chemical signature of planet formation in the binary system HAT...
Context. Binary systems with similar components are ideal laboratories that allow several physical p...
Recent studies of chemical abundances in metal-poor halo stars show the existence of different popul...
International audienceWe conducted an analysis of the distribution of elements from lithium to europ...
Context. HIP 100963 was one of the first solar twins identified. Although some high-precis...
Context: Binary systems with similar components are ideal laboratories that allow several physical p...
We present a high-precision, differential elemental abundance analysis of the HAT-P-1 stellar binary...
Aims. We aim to explore the possible chemical signature of planet formation in the binary system HAT...
Binary star systems are assumed to be co-natal and coeval, and thus to have identical chemical compo...
We present detailed chemical abundance analyses of the oldest solar twin HIP 102152, with a derived ...
Context. Binary systems with similar components are ideal laboratories that allow several physical p...
We present a uniform study of the chemical abundances of 12 elements (Si, Ca, Sc, Ti, V, Cr, Mn, Co,...
Aims.This work presents a uniform and homogeneous study of chemical abundances of refractory element...
Differences in the elemental abundances of planet-hosting stars in binary systems can give important...
Planetary engulfment events involve the chemical assimilation of a planet into a star’s external lay...
Aims. We aim to explore the possible chemical signature of planet formation in the binary system HAT...
Context. Binary systems with similar components are ideal laboratories that allow several physical p...
Recent studies of chemical abundances in metal-poor halo stars show the existence of different popul...
International audienceWe conducted an analysis of the distribution of elements from lithium to europ...
Context. HIP 100963 was one of the first solar twins identified. Although some high-precis...
Context: Binary systems with similar components are ideal laboratories that allow several physical p...
We present a high-precision, differential elemental abundance analysis of the HAT-P-1 stellar binary...
Aims. We aim to explore the possible chemical signature of planet formation in the binary system HAT...
Binary star systems are assumed to be co-natal and coeval, and thus to have identical chemical compo...
We present detailed chemical abundance analyses of the oldest solar twin HIP 102152, with a derived ...
Context. Binary systems with similar components are ideal laboratories that allow several physical p...
We present a uniform study of the chemical abundances of 12 elements (Si, Ca, Sc, Ti, V, Cr, Mn, Co,...
Aims.This work presents a uniform and homogeneous study of chemical abundances of refractory element...