Planet accretion and the abundances of lithium isotopes
arXiv:astro-ph/0203102 · doi:10.1051/0004-6361:20020338
Abstract
Planet accretion onto solar type stars may significantly change the stellar atmospheric abundances of 6Li and 7Li if it takes place after the star has arrived at the main sequence. Ingestion of planets at an earlier phase will not affect theses abundances because of extensive pre-main sequence mixing and burning. We present quantitative estimates of the main sequence evolution of stellar surface lithium abundances after planet ingestion. At solar metallicities, for stellar masses in the range ~ 1.3-1.1 M_sun, a large fraction of the ingested 6Li is likely to be preserved during the whole main sequence lifetime according to the standard model. Preservation of the less fragile 7Li isotope occurs in a larger mass range ~ 1.3-0.9 M_sun. At high metallicities typical of planet host stars, the ranges of masses are slightly reduced essentially due to the thicker convective zones. Further reduction is expected if non-standard processes cause extra-mixing of material below the base of the convective zone, but even in this case there are stellar masses where both isotopes are significantly preserved. We conclude that there is a range of stellar effective temperature where migration and accretion of planets and planetary material can be empirically tested using high-resolution spectroscopy of the lithium isotopes.
5 pages, 2 figures(.eps), LaTeX2e, macro aa.cls Astronomy and Astrophysics
Cited by in corpus (29)
- Lithium depletion in solar-like stars: no planet connection
- Lithium in stars with exoplanets
- Metal-rich accretion and thermohaline instabilities in exoplanets-host stars: consequences on the light elements abundances
- Correlation between lithium abundances and ages of solar twin stars
- A Search for Li in Stars with Planets
- A Comparative Study on Lithium Abundances in Solar--Type Stars With and Without Planets
- New measurement of the Lithium-6/Lithium-7 isotopic ratio in the extra-solar planet host star HD82943 and line blending in the Li 6708 A region
- The Chemical Compositions of Stars with Planets: A Review
- The Li-age correlation: the Sun is unusually Li deficient for its age
- Parent Stars of Extrasolar Planets. IX. Lithium Abundances
- High-Resolution Spectroscopy of the Planetary Host HD 13189: Highly-Evolved and Metal-Poor
- Measurements of the Isotopic Ratio 6Li/7Li in Stars with Planets
- A Search for Li in Lithium-Poor Stars with Planets
- The Solar Twin Planet Search. V. Close-in, low-mass planet candidates and evidence of planet accretion in the solar twin HIP 68468
- A Keck/HIRES Doppler Search for Planets Orbiting Metal-Poor Dwarfs. I. Testing Giant Planet Formation and Migration Scenarios
- Lithium depletion and angular momentum transport in solar-type stars
- Lithium Enrichment Signatures of Planetary Engulfment Events in Evolved Stars
- Eating Planets for Lunch and Dinner: Signatures of Planet Consumption by Evolving Stars
- Chemical Composition of the Planet-Harboring Star TrES-1
- Lithium depletion and angular momentum transport in F-type and G-type stars in Galactic open clusters
- 3D non-LTE corrections for Li abundance and 6Li/7Li isotopic ratio in solar-type stars I. Application to HD 207129 and HD 95456
- Thorough characterisation of the 16 Cygni system Part I: Forward seismic modelling with WhoSGlAd
- A GALAH View of the Chemical Homogeneity and Ages of Stellar Strings Identified in Gaia
- Hot Jupiter engulfment by a red giant in 3D hydrodynamics
- Chemical composition of stars with massive planets
- Sub-stellar engulfment by a main sequence star: where is the lithium?
- Effect of planet ingestion on low-mass stars evolution: the case of 2MASS J08095427--4721419 star in the Gamma Velorum cluster
- Light elements in stars with exoplanets
- Evolution of the ZTF SLRN-2020 star-planet merger