Mass-radius relationships for exoplanets
arXiv:1001.4851 · doi:10.1088/0004-637X/744/1/59
Abstract
For planets other than Earth, interpretation of the composition and structure depends largely on comparing the mass and radius with the composition expected given their distance from the parent star. The composition implies a mass-radius relation which relies heavily on equations of state calculated from electronic structure theory and measured experimentally on Earth. We lay out a method for deriving and testing equations of state, and deduce mass-radius and mass-pressure relations for key materials whose equation of state is reasonably well established, and for differentiated Fe/rock. We find that variations in the equation of state, such as may arise when extrapolating from low pressure data, can have significant effects on predicted mass- radius relations, and on planetary pressure profiles. The relations are compared with the observed masses and radii of planets and exoplanets. Kepler-10b is apparently 'Earth- like,' likely with a proportionately larger core than Earth's, nominally 2/3 of the mass of the planet. CoRoT-7b is consistent with a rocky mantle over an Fe-based core which is likely to be proportionately smaller than Earth's. GJ 1214b lies between the mass-radius curves for H2O and CH4, suggesting an 'icy' composition with a relatively large core or a relatively large proportion of H2O. CoRoT-2b is less dense than the hydrogen relation, which could be explained by an anomalously high degree of heating or by higher than assumed atmospheric opacity. HAT-P-2b is slightly denser than the mass-radius relation for hydrogen, suggesting the presence of a significant amount of matter of higher atomic number. CoRoT-3b lies close to the hydrogen relation. The pressure at the center of Kepler-10b is 1.5+1.2-1.0 TPa. The central pressure in CoRoT-7b is probably close to 0.8TPa, though may be up to 2TPa.
Added more recent exoplanets. Tidied text and references. Added extra "rock" compositions. Responded to referee comments
References in corpus (19)
- Mass-Radius Relationships for Solid Exoplanets
- A super-Earth transiting a nearby low-mass star
- Transiting exoplanets from the CoRoT space mission VIII. CoRoT-7b: the first Super-Earth with measured radius
- KEPLER's First Rocky Planet: Kepler-10b
- Transiting exoplanets from the CoRoT space mission VI. CoRoT-Exo-3b: The first secure inhabitant of the brown-dwarf desert
- Composition and fate of short-period super-Earths: The case of CoRoT-7b
- Ocean Planet or Thick Atmosphere: On the Mass-Radius Relationship for Solid Exoplanets with Massive Atmospheres
- Electronic transport coefficients from ab initio simulations and application to dense liquid hydrogen
- Phase separation in hydrogen-helium mixtures at Mbar pressures
- The Transit Light Curve Project. XIII. Sixteen Transits of the Super-Earth GJ 1214b
- An Investigation into the Radial Velocity Variations of CoRoT-7
- Re-assessing the radial-velocity evidence for planets around CoRoT-7
- Refined parameters and spectroscopic transit of the super-massive planet HD147506b
- Refined stellar, orbital and planetary parameters of the eccentric HAT-P-2 planetary system
- Quantum Monte Carlo Simulation of the High-Pressure Molecular-Atomic Crossover in Fluid Hydrogen
- On planetary mass determination in the case of super-Earths orbiting active stars. The case of the CoRoT-7 system
- Structure and evolution of the first CoRoT exoplanets: Probing the Brown Dwarf/Planet overlapping mass regime
- Numerical solution of shock and ramp compression for general material properties
- The equation of state of solid nickel aluminide
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