Signatures of rocky planet engulfment in HAT-P-4. Implications for chemical tagging studies
arXiv:1707.02180 · doi:10.1051/0004-6361/201731430
Abstract
Aims. To explore the possible chemical signature of planet formation in the binary system HAT-P-4, by studying abundance vs condensation temperature Tc trends. The star HAT-P-4 hosts a planet detected by transits while its stellar companion does not have any detected planet. We also study the Lithium content, which could shed light on the problem of Li depletion in exoplanet host stars. Conclusions. The exoplanet host star HAT-P-4 is found to be ~0.1 dex more metal rich than its companion, which is one of the highest differences in metallicity observed in similar systems. This could have important implications for chemical tagging studies, disentangling groups of stars with a common origin. We rule out a possible peculiar composition for each star as lambda Boo, delta Scuti or a Blue Straggler. The star HAT-P-4 is enhanced in refractory elements relative to volatile when compared to its stellar companion. Notably, the Lithium abundance in HAT-P-4 is greater than in its companion by ~0.3 dex, which is contrary to the model that explains the Lithium depletion by the presence of planets. We propose a scenario where, at the time of planet formation, the star HAT-P-4 locked the inner refractory material in planetesimals and rocky planets, and formed the outer gas giant planet at a greater distance. The refractories were then accreted onto the star, possibly due to the migration of the giant planet. This explains the higher metallicity, the higher Lithium content, and the negative Tc trend detected. A similar scenario was recently proposed for the solar twin star HIP 68468, which is in some aspects similar to HAT-P-4. We estimate a mass of at least Mrock ~ 10 Mearth locked in refractory material in order to reproduce the observed Tc trends and metallicity.
5 pages, 6 figures, A&A Letters accepted
References in corpus (14)
- Models of the in situ formation of detected extrasolar giant planets
- Oxygen Abundances in Nearby Stars. Clues to the formation and evolution of the Galactic disk
- Li abundances in F stars: planets, rotation and galactic evolution
- Stellar Chemical Abundances: In Pursuit of the Highest Achievable Precision
- 18 Sco: a solar twin rich in refractory and neutron-capture elements. Implications for chemical tagging
- On the origin of stars with and without planets. Tc trends and clues to Galactic evolution
- High precision abundances in the 16 Cyg binary system: a signature of the rocky core in the giant planet
- A high precision chemical abundance analysis of the HAT-P-1 stellar binary: constraints on planet formation
- C/O and O/H Ratios Suggest Some Hot Jupiters Originate Beyond the Snow Line
- Detailed Abundances of Planet-Hosting Wide Binaries. I. Did Planet Formation Imprint Chemical Signatures in the Atmospheres of HD 20782/81?
- The Solar Twin Planet Search. V. Close-in, low-mass planet candidates and evidence of planet accretion in the solar twin HIP 68468
- Parent Stars of Extrasolar Planets - XIV. Strong Evidence of Li Abundance Deficit
- Parent Stars of Extrasolar Planets - XIII. Additional Evidence for Li Abundance Anomalies
- Accretion of chemically fractionated material on a wide binary with a blue straggler
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- High-precision analysis of binary stars with planets. I. Searching for condensation temperature trends in the HD 106515 system
- The consistency of chemical clocks among coeval stars
- The peculiar chemical pattern of the WASP-160 binary system: signatures of planetary formation and evolution?
- Search for planets around stars with wide brown dwarfs
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- A Search for Exoplanets in Open Clusters and Young Associations based on TESS Objects of Interest
- Assessing the processes behind planet engulfment and its imprints
- Dust-Evacuated Zones Near Massive Stars: Consequences of Dust Dynamics on Star-forming Regions
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- Elemental Abundances of Kepler Objects of Interest in APOGEE DR17
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- Evolution of the ZTF SLRN-2020 star-planet merger
- Detailed Abundances of Planet-Hosting Open Clusters. The Praesepe (Beehive) Cluster