A new class of Super-Earths formed from high-temperature condensates: HD219134 b, 55 Cnc e, WASP-47 e
arXiv:1812.07222 · doi:10.1093/mnras/sty3435
Abstract
We hypothesise that differences in the temperatures at which the rocky material condensed out of the nebula gas can lead to differences in the composition of key rocky species (e.g., Fe, Mg, Si, Ca, Al, Na) and thus planet bulk density. Such differences in the observed bulk density of planets may occur as a function of radial location and time of planet formation. In this work we show that the predicted differences are on the cusp of being detectable with current instrumentation. In fact, for HD 219134, the 10 % lower bulk density of planet b compared to planet c could be explained by enhancements in Ca, Al rich minerals. However, we also show that the 11 % uncertainties on the individual bulk densities are not sufficiently accurate to exclude the absence of a density difference as well as differences in volatile layers. Besides HD 219134 b, we demonstrate that 55 Cnc e and WASP-47 e are similar candidates of a new Super-Earth class that have no core and are rich in Ca and Al minerals which are among the first solids that condense from a cooling proto-planetary disc. Planets of this class have densities 10-20% lower than Earth-like compositions and may have very different interior dynamics, outgassing histories and magnetic fields compared to the majority of Super-Earths.
accepted for publication in MNRAS, 17 pages, 16 figures
References in corpus (26)
- Atmospheric Escape from Hot Jupiters
- Structure and Evolution of Nearby Stars with Planets II. Physical Properties of ~1000 Cool Stars from the SPOCS Catalog
- Can we constrain interior structure of rocky exoplanets from mass and radius measurements?
- Stellar Abundances in the Solar Neighborhood: The Hypatia Catalog
- Inevitability of Plate Tectonics on Super-Earths
- Ranges of Atmospheric Mass and Composition of Super Earth Exoplanets
- A generalized bayesian inference method for constraining the interiors of super Earths and sub-Neptunes
- Geodynamics and Rate of Volcanism on Massive Earth-like Planets
- Cavity opening by a giant planet in a protoplanetary disc and effects on planetary migration
- Theoretical Emission Spectra of Atmospheres of Hot Rocky Super-Earths
- Excess C/O and C/H in outer protoplanetary disk gas
- The Elemental Abundances (with Uncertainties) of the Most Earth-like Planet
- Probing the Blow-Off Criteria of Hydrogen-Rich "Super-Earths"
- The habitability of a stagnant-lid Earth
- Effects of Bulk Composition on The Atmospheric Dynamics on Close-in Exoplanets
- Chemistry in an Evolving Protoplanetary Disk: Effects on Terrestrial Planet Composition
- Two massive rocky planets transiting a K-dwarf 6.5 parsecs away
- On the evolution of mean motion resonances through stochastic forcing: Fast and slow libration modes and the origin of HD128311
- Linking the Climate and Thermal Phase Curve of 55 Cancri e
- A Case for an Atmosphere on Super-Earth 55 Cancri e
- Bayesian analysis of interiors of HD 219134b, Kepler-10b, Kepler-93b, CoRoT-7b, 55 Cnc e, and HD 97658b using stellar abundance proxies
- From Hot Jupiters to Super-Earths via Roche Lobe Overflow
- Searching for signatures of planet formation in stars with circumstellar debris discs
- Precise Masses in the WASP-47 System
- Understanding the assembly of Kepler's compact planetary systems
- Breaking mean-motion resonances during Type I planet migration
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- Influence of sub- and super-solar metallicities on the compositions of solid planetary building blocks
- Testing exoplanet evaporation with multi-transiting systems
- Constraining the entropy of formation from young transiting planets
- Arid or Cloudy: Characterizing the Atmosphere of the super-Earth 55 Cancri e using High-Resolution Spectroscopy
- Multi-season optical modulation phased with the orbit of the super-Earth 55 Cnc e
- From the stellar properties of HD219134 to the internal compositions of its transiting exoplanets
- Thermal evolution of rocky exoplanets with a graphite outer shell