On the correlation between metallicity and the presence of giant planets
arXiv:0904.4445 · doi:10.1088/0004-637X/698/1/L1
Abstract
The correlation between stellar metallicity and the presence of giant planets is well established. It has been tentatively explained by the possible increase of planet formation probability in stellar disks with enhanced amount of metals. However, there are two caveats to this explanation. First, giant stars with planets do not show a metallicity distribution skewed towards metal-rich objects, as found for dwarfs. Second, the correlation with metallicity is not valid at intermediate metallicities, for which it can be shown that giant planets are preferentially found orbiting thick disk stars. None of these two peculiarities is explained by the proposed scenarios of giant planet formation. We contend that they are galactic in nature, and probably not linked to the formation process of giant planets. It is suggested that the same dynamical effect, namely the migration of stars in the galactic disk, is at the origin of both features, with the important consequence that most metal-rich stars hosting giant planets originate from the inner disk, a property that has been largely neglected until now. We illustrate that a planet-metallicity correlation similar to the observed one is easily obtained if stars from the inner disk have a higher percentage of giant planets than stars born at the solar radius, with no specific dependence on metallicity. We propose that the density of molecular hydrogen in the inner galactic disk (the molecular ring) could play a role in setting the high percentage of giant planets that originate from this region.
Accepted in ApJL
References in corpus (10)
- The Boston University-Five College Radio Astronomy Observatory Galactic Ring Survey
- alpha-, r-, and s-process element trends in the Galactic thin and thick disks
- Radial mixing and the transition between the thick and thin Galactic discs
- Evolved stars hint to an external origin of enhanced metallicity in planet-hosting stars
- Radial mixing in the outer Milky Way disk caused by an orbiting satellite
- Silicon and Nickel Enrichment in Planet-Host Stars: Observations and Implications for the Core-Accretion Theory of Planet Formation
- Revisiting two local constraints of the Galactic chemical evolution
- Parent Stars of Extrasolar Planets. VIII. Chemical Abundances for 18 Elements in 31 Stars
- A peculiarity of metal-poor stars with planets ?
- Kinematics of planet-host stars and their relation with dynamical streams in the solar neighbourhood
Cited by in corpus (42)
- Estimating stellar birth radii and the time evolution of the Milky Way's ISM metallicity gradient
- Exploring the alpha-enhancement of metal-poor planet-hosting stars. The Kepler and HARPS samples
- Overabundance of alpha-elements in exoplanet host stars
- On the origin of stars with and without planets. Tc trends and clues to Galactic evolution
- Heavy metal rules. I. Exoplanet incidence and metallicity
- The metallicity signature of evolved stars with planets
- Metallicities of Planet Hosting Stars: A Sample of Giants and Subgiants
- Chemical composition of the Taurus-Auriga association
- Searching for signatures of planet formation in stars with circumstellar debris discs
- Catalog for the ESPRESSO blind radial velocity exoplanet survey
- Chemical abundances of 1111 FGK stars from the HARPS GTO planet search program IV. Carbon and C/O ratios for Galactic stellar populations and planet hosts
- Evolved stars and the origin of abundance trends in planet hosts
- C/O vs Mg/Si ratios in solar type stars: The HARPS sample
- Do Metal-Rich Stars Make Metal-Rich Planets? New Insights on Giant Planet Formation from Host Star Abundances
- WASP-36b: A new transiting planet around a metal-poor G-dwarf, and an investigation into analyses based on a single transit light curve
- K2-111: an old system with two planets in near-resonance
- Search for giant planets in M67 I. Overview
- The Penn State-Torun Centre for Astronomy Planet Search stars. I. Spectroscopic analysis of 348 red giants
- Behaviour of elements from lithium to europium in stars with and without planets
- Exoplanets in the Galactic context: Planet occurrence rates in the thin disk, thick disk and stellar halo of Kepler stars
- Chemical fingerprints of hot Jupiter planet formation
- Small Planets in the Galactic Context: Host Star Kinematics, Iron, and Element Enhancement
- Occurrence rates of small planets from HARPS: Focus on the Galactic context
- Characterisation of the Galactic thin disc with Corot targets
- How the origin of stars in the Galaxy impacts the composition of planetary building blocks
- Chemical abundances of neutron capture elements in exoplanet-hosting stars
- The chemical composition of planet building blocks as predicted by stellar population synthesis
- The GAPS Programme with HARPS-N at TNG XVIII. Two new giant planets around the metal-poor stars HD 220197 and HD 233832
- Exoplanets Across Galactic Stellar Populations with PLATO: Estimating Exoplanet Yields Around FGK Stars for the Thin Disk, Thick Disk and Stellar Halo
- Which type of planets do we expect to observe in the Habitable Zone?
- Beryllium abundances in stars with planets:Extending the sample
- Sun-like stars unlike the Sun: Clues for chemical anomalies of cool stars
- The GAPS Programme at TNG -- XXIV. An eccentric Neptune-mass planet near the inner edge of the BD-11 4672 habitable zone
- Mg/Si mineralogical ratio of low-mass planet hosts. Correction for the NLTE effects
- Characterization of Exoplanet-Host Stars
- Ariel stellar characterisation III. Fast rotators and new FGK stars in the Ariel Mission Candidate Sample
- The peculiar composition of the Sun is not related to giant planets
- Exoplanet Occurrence Rate with Age for FGK Stars in Kepler
- On the incidence of planet candidates in open clusters and a planet confirmation
- Where in the Milky Way Do Exoplanets Preferentially Form?
- Zero Age Planetary Orbit of Gas Giant Planets Revisited: Reinforcement of the Link with Stellar Metallicity
- A Close-in Planet Orbiting Giant Star HD 167768