Long-Term Lithium Abundance Signatures following Planetary Engulfment
arXiv:2207.13232 · doi:10.1093/mnras/stac2436
Abstract
Planetary engulfment events can occur while host stars are on the main sequence. The addition of rocky planetary material during engulfment will lead to refractory abundance enhancements in the host star photosphere, but the level of enrichment and its duration will depend on mixing processes that occur within the stellar interior, such as convection, diffusion, and thermohaline mixing. We examine engulfment signatures by modeling the evolution of photospheric lithium abundances. Because lithium can be burned before or after the engulfment event, it produces unique signatures that vary with time and host star type. Using MESA stellar models, we quantify the strength and duration of these signatures following the engulfment of a 1, 10, or 100 planetary companion with bulk Earth composition, for solar-metallicity host stars with masses ranging from 0.51.4 . We find that lithium is quickly depleted via burning in low-mass host stars () on a time scale of a few hundred Myrs, but significant lithium enrichment signatures can last for Gyrs in G-type stars (). For more massive stars (1.31.4 ), engulfment can enhance internal mixing and diffusion processes, potentially decreasing the surface lithium abundance. Our predicted signatures from exoplanet engulfment are consistent with observed lithium-rich solar-type stars and abundance enhancements in chemically inhomogeneous binary stars.
13 pages, 9 figures, in review for MNRAS
References in corpus (12)
- Modules for Experiments in Stellar Astrophysics (MESA)
- Modules for Experiments in Stellar Astrophysics (MESA): Pulsating Variable Stars, Rotation, Convective Boundaries, and Energy Conservation
- Chemical Transport and Spontaneous Layer Formation in Fingering Convection in Astrophysics
- Identical or fraternal twins? : The chemical homogeneity of wide binaries from Gaia DR2
- Lithium depletion in solar-like stars: effect of overshooting based on realistic multi-dimensional simulations
- Chemical evidence for planetary ingestion in a quarter of Sun-like stars
- Polluted White Dwarfs: Mixing Regions and Diffusion Timescales
- Reconstructing fossil sub-structures of the Galactic disk: clues from abundance patterns of old open clusters and moving groups
- Enhanced mixing in magnetized fingering convection, and implications for RGB stars
- Lithium depletion and angular momentum transport in F-type and G-type stars in Galactic open clusters
- Fingering convection induced by atomic diffusion in stars: 3D numerical computations and applications to stellar models
- Matter accretion in metal-poor stars down to extremely metal-poor stars and the lithium problem