HD 80606: Searching the chemical signature of planet formation
arXiv:1507.08125 · doi:10.1051/0004-6361/201526644
Abstract
(Abridged) Binary systems with similar components are ideal laboratories which allow several physical processes to be tested, such as the possible chemical pattern imprinted by the planet formation process. Aims. We explore the probable chemical signature of planet formation in the remarkable binary system HD 80606 - HD 80607. The star HD 80606 hosts a giant planet with 4 MJup detected by both transit and radial velocity techniques, being one of the most eccentric planets detected to date. We study condensation temperature Tc trends of volatile and refractory element abundances to determine whether there is a depletion of refractories that could be related to the terrestrial planet formation. Methods. We carried out a high-precision abundance determination in both components of the binary system, using a line-by-line strictly differential approach, using the Sun as a reference and then using HD 80606 as reference. We used an updated version of the program FUNDPAR, together with ATLAS9 model atmospheres and the MOOG code. Conclusions. From the study of Tc trends, we concluded that the stars HD 80606 and HD 80607 do not seem to be depleted in refractory elements, which is different for the case of the Sun. Then, the terrestrial planet formation would have been less efficient in the components of this binary system than in the Sun. The lack of a trend for refractory elements with Tc between both stars implies that the presence of a giant planet do not neccesarily imprint a chemical signature in their host stars, similar to the recent result of Liu et al. (2014). This is also in agreement with Melendez et al. (2009), who suggest that the presence of close-in giant planets might prevent the formation of terrestrial planets. Finally, we speculate about a possible planet around the star HD 80607.
19 pages, 9 figures, A&A accepted
References in corpus (21)
- Spectroscopic parameters for 451 stars in the HARPS GTO planet search program. Stellar [Fe/H] and the frequency of exo-Neptunes
- HAT-P-1b: A Large-Radius, Low-Density Exoplanet Transiting one Member of a Stellar Binary
- Kepler constraints on planets near hot Jupiters
- Properties of planets in binary systems. The role of binary separation
- Oxygen Abundances in Nearby Stars. Clues to the formation and evolution of the Galactic disk
- A non-LTE study of neutral and singly-ionized calcium in late-type stars
- Chemical abundances of 451 stars from the HARPS GTO planet search program: Thin disc, thick disc, and planets
- Photometric and spectroscopic detection of the primary transit of the 111-day-period planet HD 80606 b
- Stellar parameters and chemical abundances of 223 evolved stars with and without planets
- Visual Binaries in the Orion Nebula Cluster
- Stellar Chemical Abundances: In Pursuit of the Highest Achievable Precision
- The frequency of planets in multiple systems
- 18 Sco: a solar twin rich in refractory and neutron-capture elements. Implications for chemical tagging
- Detection of a transit by the planetary companion of HD 80606
- 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
- The Occurrence of Wide-Orbit Planets in Binary Star Systems
- The GAPS Programme with HARPS-N@TNG V. A comprehensive analysis of the XO-2 stellar and planetary systems
- Parent Stars of Extrasolar Planets. VIII. Chemical Abundances for 18 Elements in 31 Stars
- Predictions for the correlation between giant and terrestrial extrasolar planets in dynamically evolved systems
- On the Chemical and Structural Evolution of the Galactic Disk
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- Detailed Abundances of Planet-Hosting Wide Binaries. II. HD80606 + HD80607
- Stellar abundance of binary stars: their role in determining the formation location of super-Earths and ice giants
- The peculiar chemical pattern of the WASP-160 binary system: signatures of planetary formation and evolution?
- Using non-solar-scaled opacities to derive stellar parameters. Toward high-precision parameters and abundances
- Sun-like stars unlike the Sun: Clues for chemical anomalies of cool stars
- Disentangling the origin of chemical differences using GHOST
- Assessing the processes behind planet engulfment and its imprints
- Gemini-GRACES high-quality spectra of Kepler evolved stars with transiting planets I. Detailed characterization of multi-planet systems Kepler-278 and Kepler-391
- Detailed Abundances of Planet-Hosting Open Clusters. The Praesepe (Beehive) Cluster