2009ApJ...693..722G


Query : 2009ApJ...693..722G

2009ApJ...693..722G - Astrophys. J., 693, 722-733 (2009/March-1)

A study of the accuracy of mass-radius relationships for silicate-rich and ice-rich planets up to 100 Earth masses.

GRASSET O., SCHNEIDER J. and SOTIN C.

Abstract (from CDS):

A mass-radius (M-R) relationship is proposed for solid planets and solid cores ranging from 1 to 100 Earth-mass planets. It relies on the assumption that solid spheres are composed of iron and silicates, around which a variable amount of water is added. The M-R law has been set up assuming that the planetary composition is similar to the averaged composition for silicates and iron obtained from the major elements ratio of 94 stars hosting exoplanets. Except on Earth for which a tremendous amount of data is available, the composition of silicate mantles and metallic cores cannot be constrained. Similarly, thermal profiles are poorly known. In this work, the effect of compositional parameters and thermal profiles on radii estimates is quantified. It will be demonstrated that uncertainties related to composition and temperature are secondary compared to the effect of the amount of water. The super-Earth family includes four classes of planets: iron-rich, silicate-rich, water-rich, or with a thick atmosphere. For a given mass, the planetary radius increases significantly from the iron-rich to the atmospheric-rich planet. Even if some overlaps are likely, M-R measurements could be accurate enough to ascertain the discovery of an Earth-like planet. The present work describes how the amount of water can be assessed from M-R measurements. Such an estimate depends on several assumptions including (1) the accuracy of the internal structure model and (2) the accuracy of mass and radius measurements. It is shown that if the mass and the radius are perfectly known, the standard deviation of the amount of water is about 4.5%. This value increases rapidly with the radius uncertainty but does not strongly depend on the mass uncertainty.

Abstract Copyright:

Journal keyword(s): Earth - planets and satellites: general - methods: numerical - planetary systems - equation of state

Simbad objects: 8

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Number of rows : 8
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 HD 40307d Pl 05 54 04.2405000288 -60 01 24.493007640           ~ 38 1
2 HD 40307c Pl 05 54 04.2405000288 -60 01 24.493007640           ~ 37 1
3 HD 40307b Pl 05 54 04.2405000288 -60 01 24.493007640           ~ 53 1
4 Ross 905b Pl 11 42 11.0933350978 +26 42 23.650782778           ~ 811 1
5 BD-07 4003c Pl 15 19 26.8269387505 -07 43 20.189497466           ~ 115 1
6 NAME EWS 2005-BLG-390b Pl 17 54 19.2 -30 22 38           ~ 78 1
7 MOA 2007-BLG-192 * 18 08 03.798 -27 09 00.27           ~ 46 1
8 HD 189733b Pl 20 00 43.7129433648 +22 42 39.073143456           ~ 1440 1

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