Elemental ratios in stars vs planets
arXiv:1507.01343 · doi:10.1051/0004-6361/201525963
Abstract
Context. The chemical composition of planets is an important constraint for planet formation and subsequent differentiation. While theoretical studies try to derive the compositions of planets from planet formation models in order to link the composition and formation process of planets, other studies assume that the elemental ratios in the formed planet and in the host star are the same. Aims. Using a chemical model combined with a planet formation model, we aim to link the composition of stars with solar mass and luminosity with the composition of the hosted planets. For this purpose, we study the three most important elemental ratios that control the internal structure of a planet: Fe/Si, Mg/Si, and C/O. Methods. A set of 18 different observed stellar compositions was used to cover a wide range of these elemental ratios. The Gibbs energy minimization assumption was used to derive the composition of planets, taking stellar abundances as proxies for nebular abundances, and to generate planets in a self-consistent planet formation model. We computed the elemental ratios Fe/Si, Mg/Si and C/O in three types of planets (rocky, icy, and giant planets) formed in different protoplanetary discs, and compared them to stellar abundances. Results. We show that the elemental ratios Mg/Si and Fe/Si in planets are essentially identical to those in the star. Some deviations are shown for planets that formed in specific regions of the disc, but the relationship remains valid within the ranges encompassed in our study. The C/O ratio shows only a very weak dependence on the stellar value.
8 pages, 5 figures, 3 tables. Accepted for publication in A&A
References in corpus (7)
- Spectroscopic parameters for 451 stars in the HARPS GTO planet search program. Stellar [Fe/H] and the frequency of exo-Neptunes
- Chemical abundances of 451 stars from the HARPS GTO planet search program: Thin disc, thick disc, and planets
- From planetesimals to planets: volatile molecules
- Chemistry in an Evolving Protoplanetary Disk: Effects on Terrestrial Planet Composition
- Gas composition of main volatile elements in protoplanetary discs and its implication for planet formation
- From stellar nebula to planetesimals
- Parent Stars of Extrasolar Planets. VIII. Chemical Abundances for 18 Elements in 31 Stars
Cited by in corpus (77)
- The CHEOPS mission
- A generalized bayesian inference method for constraining the interiors of super Earths and sub-Neptunes
- The Chemical Homogeneity of Sun-like Stars in the Solar Neighborhood
- Molecular abundances and C/O ratios in chemically evolving planet-forming disk midplanes
- How drifting and evaporating pebbles shape giant planets I: Heavy element content and atmospheric C/O
- Atmosphere-interior exchange on hot rocky exoplanets
- Exploring Biases of Atmospheric Retrievals in Simulated JWST Transmission Spectra of Hot Jupiters
- An Earth-sized exoplanet with a Mercury-like composition
- High-precision stellar abundances of the elements - methods and applications
- Constraining planet structure and composition from stellar chemistry: trends in different stellar populations
- The Star-Planet Connection I: Using Stellar Composition to Observationally Constrain Planetary Mineralogy for the Ten Closest Stars
- Constraints on Super-Earths Interiors from Stellar Abundances
- CHEOPS observations of the HD 108236 planetary system: A fifth planet, improved ephemerides, and planetary radii
- Bayesian analysis of interiors of HD 219134b, Kepler-10b, Kepler-93b, CoRoT-7b, 55 Cnc e, and HD 97658b using stellar abundance proxies
- Does a Differentiated, Carbonate-Rich, Rocky Object Pollute the White Dwarf SDSSJ104341.53+085558.2?
- From stellar to planetary composition: Galactic chemical evolution of Mg/Si mineralogical ratio
- 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
- Spatially-resolving the terminator: Variation of Fe, temperature and winds in WASP-76 b across planetary limbs and orbital phase
- Carbon to oxygen ratios in extrasolar planetesimals
- Chemical Abundances of M-dwarfs from the APOGEE Survey. I. The Exoplanet Hosting Stars Kepler-138 and Kepler-186
- Evolved stars and the origin of abundance trends in planet hosts
- The GAPS Programme with HARPS-N at TNG. XXXV. Fundamental properties of transiting exoplanet host stars
- C/O vs Mg/Si ratios in solar type stars: The HARPS sample
- The Nominal Range of Rocky Planet Masses, Radii, Surface Gravities and Bulk Densities
- The influence of bulk composition on long-term interior-atmosphere evolution of terrestrial exoplanets
- Impact of the measured parameters of exoplanets on the inferred internal structure
- A detailed analysis of the Gl 486 planetary system
- K2-111: an old system with two planets in near-resonance
- MINDS. Hydrocarbons detected by JWST/MIRI in the inner disk of Sz28 consistent with a high C/O gas-phase chemistry
- CRIRES+ and ESPRESSO reveal an atmosphere enriched in volatiles relative to refractories on the ultra-hot Jupiter WASP-121b
- Stellar and Planetary Characterization of the Ross 128 Exoplanetary System from APOGEE Spectra
- Disentangling Hot Jupiters formation location from their chemical composition
- Precise masses for the transiting planetary system HD 106315 with HARPS
- Company for the ultra-high density, ultra-short period sub-Earth GJ 367 b: discovery of two additional low-mass planets at 11.5 and 34 days
- Mineralogy, structure and habitability of carbon-enriched rocky exoplanets: A laboratory approach
- High-resolution Spectroscopic Study of Dwarf Stars in the Northern Sky: Lithium, Carbon, and Oxygen Abundances
- Chemical fingerprints of hot Jupiter planet formation
- Unbiasing the density of TTV-characterised sub-Neptunes: Update of the mass-radius relationship of 34 Kepler planets
- SimAb: A simple, fast and flexible model to assess the effects of planet formation on the atmospheric composition of gas giants
- Exoplanet Characterization using Conditional Invertible Neural Networks
- A pebbles accretion model with chemistry and implications for the solar system
- TOI-5678 b: A 48-day transiting Neptune-mass planet characterized with CHEOPS and HARPS
- Secondary atmospheres on HD 219134 b and c
- A Chondritic Solar Neighborhood
- Mantle mineralogy limits to rocky planet water inventories
- Comparative high-resolution spectroscopy of M dwarfs -- exploring non-LTE effects
- A mineralogical reason why all exoplanets cannot be equally oxidising
- The Galactic Distribution of Phosphorus: A Survey of 163 Disk and Halo Stars
- Elemental Abundances of the Super-Neptune WASP-107b's Host Star Using High-resolution, Near-infrared Spectroscopy
- A Concise Treatise on Converting Stellar Mass Fractions to Abundances to Molar Ratios
- Chemical Composition Of Bright Stars In The Northern Hemisphere: Star-Planet Connection
- Chemical Composition of Bright Stars in the Continuous Viewing Zone of the TESS Space Mission
- Eta-Earth Revisited II: Deriving a Maximum Number of Earth-like Habitats in the Galactic Disk
- Which type of planets do we expect to observe in the Habitable Zone?
- Linking the primordial composition of planet building disks to the present-day composition of rocky exoplanets
- The GALAH Survey: Using Galactic Archaeology to Refine our Knowledge of TESS Target Stars
- Planetary mass-radius relations across the galaxy
- L-band Spectroscopy with Magellan-AO/Clio2: First Results on Young Low-Mass Companions
- Blue marble, stagnant lid: Could dynamic topography avert a waterworld?
- Revisiting equilibrium condensation and rocky planet compositions: Introducing the ECCOplanets code
- TOI-1055 b: Neptunian planet characterised with HARPS, TESS, and CHEOPS
- Radial Drift and Concurrent Ablation of Boulder-Sized Objects
- A High-Resolution Spectroscopic Survey of Directly Imaged Companion Hosts: I. Determination of diagnostic stellar abundances for planet formation and composition
- Chemical composition of stars with massive planets
- A Gap in the Densities of Small Planets Orbiting M Dwarfs: Rigorous Statistical Confirmation Using the Open-source Code RhoPop
- Constraining the volatile fraction of planets from transit observations
- Multiverse Predictions for Habitability: Element Abundances
- The peculiar composition of the Sun is not related to giant planets
- Chemical composition of planetary hosts: C, N, and -element abundances
- Host-star and exoplanet composition: Polluted white dwarf reveals depletion of moderately refractory elements in planetary material
- Diverse Carbonates in Exoplanet Oceans Promote the Carbon Cycle
- A Disintegrating Rocky World Shrouded in Dust and Gas: Mid-IR Observations of K2-22b using JWST
- Calibrating the metallicity of M dwarfs in wide physical binaries with F-, G-, and K-primaries -- II: Carbon, oxygen, and odd-Z iron-peak abundances of the primary stars
- A High-Resolution Spectroscopic Survey of Directly Imaged Companion Hosts: II. Diversity in C/O Ratios among Host Stars
- Abundance analysis of benchmark M dwarfs
- Quantifying thermal water dissociation in the dayside photosphere of WASP-121 b using NIRPS
- A chemical perspective on planet formation in reduced systems