There are two possible mechanisms to imprint planet signatures in the chemical composition of Sun-like stars: i) dust condensation at the early stages of planet formation, causing a depletion of refractory elements in the gas accreted by the star in the late stages of its formation; ii) planet engulfment, enriching the host star in lithium and refractory elements. We discuss both planet signatures, the influence of galactic chemical evolution, and the importance of binaries composed of stellar twins as laboratories to verify abundance anomalies imprinted by planets.Invited talk at "Sun-like stars unlike the Sun", a Cool Stars 19 Splinter Sessio
We explore a sample of 148 solar-like stars to search for a possible correlation between the slopes ...
The link between solar and stellar astrophysics, exoplanet research, and galactic astronomy is funda...
We explore a sample of 148 solar-like stars to search for a possible correlation between the slopes ...
Context. Elemental abundance studies of solar twin stars suggest that the solar chemical composition...
Recent studies have shown that the elemental abundances in the Sun are anomalous when compared to mo...
Context. Studies based on high-precision abundance determinations revealed that chemical patterns of...
Recent studies have shown that the elemental abundances in the Sun are anomalous when compared to mo...
Context. Studies based on high-precision abundance determinations revealed that chemical patterns of...
Context. Elemental abundance studies of solar twin stars suggest that the solar chemical composition...
We present a summary of the splinter session “Sun-like stars unlike the Sun” that was held on June 9...
International audienceWe present a summary of the splinter session "Sun-like stars unlike the Sun" t...
Planetary engulfment events involve the chemical assimilation of a planet into a star’s external lay...
We present a line-by-line differential analysis of a sample of 16 planet-hosting stars and 68 compar...
We present a summary of the splinter session “Sun-like stars unlike the Sun” that was held on June 9...
This work examines the chemical nature of extrasolar planetary systems, considering both the host st...
We explore a sample of 148 solar-like stars to search for a possible correlation between the slopes ...
The link between solar and stellar astrophysics, exoplanet research, and galactic astronomy is funda...
We explore a sample of 148 solar-like stars to search for a possible correlation between the slopes ...
Context. Elemental abundance studies of solar twin stars suggest that the solar chemical composition...
Recent studies have shown that the elemental abundances in the Sun are anomalous when compared to mo...
Context. Studies based on high-precision abundance determinations revealed that chemical patterns of...
Recent studies have shown that the elemental abundances in the Sun are anomalous when compared to mo...
Context. Studies based on high-precision abundance determinations revealed that chemical patterns of...
Context. Elemental abundance studies of solar twin stars suggest that the solar chemical composition...
We present a summary of the splinter session “Sun-like stars unlike the Sun” that was held on June 9...
International audienceWe present a summary of the splinter session "Sun-like stars unlike the Sun" t...
Planetary engulfment events involve the chemical assimilation of a planet into a star’s external lay...
We present a line-by-line differential analysis of a sample of 16 planet-hosting stars and 68 compar...
We present a summary of the splinter session “Sun-like stars unlike the Sun” that was held on June 9...
This work examines the chemical nature of extrasolar planetary systems, considering both the host st...
We explore a sample of 148 solar-like stars to search for a possible correlation between the slopes ...
The link between solar and stellar astrophysics, exoplanet research, and galactic astronomy is funda...
We explore a sample of 148 solar-like stars to search for a possible correlation between the slopes ...