Density and Eccentricity of Kepler Planets
arXiv:1210.7810 · doi:10.1088/0004-637X/772/1/74
Abstract
We analyze the transit timing variations obtained by the Kepler mission for 22 sub-jovian planet pairs (17 published, 5 new) that lie close to mean motion resonances. We find that the TTV phases for most of these pairs lie close to zero, consistent with an eccentricity distribution that has a very low RMS value of e ~ 0.01; but about a quarter of the pairs possess much higher eccentricities, up to 0.1 - 0.4. For the low-eccentricity pairs, we are able to statistically remove the effect of eccentricity to obtain planet masses from TTV data. These masses, together with those measured by radial velocity, yield a best fit mass-radius relation M~3 M_E (R/R_E). This corresponds to a constant surface escape velocity of 20km/s. We separate the planets into two distinct groups, "mid-sized" (those greater than 3 R_E), and "compact" (those smaller). All mid-sized planets are found to be less dense than water and therefore contain extensive H/He envelopes, likely comparable in mass to that of their cores. We argue that these planets have been significantly sculpted by photoevaporation. Surprisingly, mid-sized planets are discovered exclusively around stars more massive than 0.8 M_sun. The compact planets, on the other hand, are often denser than water. Combining our density measurements with those from radial velocity studies, we find that hotter compact planets tend to be denser, with the hottest ones reaching rock density. Moreover, hotter planets tend to be smaller in sizes. These results can be explained if the compact planets are made of rocky cores overlaid with a small amount of hydrogen, < 1% in mass, with water contributing little to their masses or sizes. Photoevaporation has exposed bare rocky cores in cases of the hottest planets. Our conclusion that these planets are likely not water-worlds contrasts with some previous studies.
extended some discussions following referee report; accepted to ApJ
References in corpus (15)
- Atmospheric Escape from Hot Jupiters
- The Occurrence Rate of Small Planets around Small Stars
- KEPLER's First Rocky Planet: Kepler-10b
- Planetary evaporation by UV & X-ray radiation: basic hydrodynamics
- Kepler-36: A Pair of Planets with Neighboring Orbits and Dissimilar Densities
- Extracting Planet Mass and Eccentricity From TTV data
- Fundamental Properties of Kepler Planet-Candidate Host Stars using Asteroseismology
- The Mass of KOI-94d and a Relation for Planet Radius, Mass, and Incident Flux
- Ocean Planet or Thick Atmosphere: On the Mass-Radius Relationship for Solid Exoplanets with Massive Atmospheres
- Ranges of Atmospheric Mass and Composition of Super Earth Exoplanets
- Resonant Repulsion of Kepler Planet Pairs
- Transit Timing Observations from Kepler: VII. Confirmation of 27 planets in 13 multiplanet systems via Transit Timing Variations and orbital stability
- A hot Uranus transiting the nearby M dwarf GJ3470. Detected with HARPS velocimetry. Captured in transit with TRAPPIST photometry
- Probing the Blow-Off Criteria of Hydrogen-Rich "Super-Earths"
- Revisiting rho 1 Cancri e: A New Mass Determination Of The Transiting super-Earth
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- The California-Kepler Survey. III. A Gap in the Radius Distribution of Small Planets
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- The Mass-Radius Relation for 65 Exoplanets Smaller than 4 Earth Radii
- The Role of Core Mass in Controlling Evaporation: the Kepler Radius Distribution and the Kepler-36 Density Dichotomy
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- Forming the cores of giant planets from the radial pebble flux in protoplanetary discs
- Planetary population synthesis coupled with atmospheric escape: a statistical view of evaporation
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- Breeding Super-Earths and Birthing Super-Puffs in Transitional Disks
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- Testing In Situ Assembly with the Kepler Planet Candidate Sample
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- A Statistical Reconstruction of the Planet Population Around Kepler Solar-Type Stars
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- Planets Near Mean-Motion Resonances
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- The mass of the Mars-sized exoplanet Kepler-138 b from transit timing
- Architectures of Exoplanetary Systems. I: A Clustered Forward Model for Exoplanetary Systems around Kepler's FGK Stars
- The Planetary System to KIC 11442793: A Compact Analogue to the Solar System
- Mass and Mass Scalings of Super-Earths
- A Spectroscopic Analysis of the California-Kepler Survey Sample: I. Stellar Parameters, Planetary Radii and a Slope in the Radius Gap
- Large eccentricity, low mutual inclination: the three-dimensional architecture of a hierarchical system of giant planets
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- Advances in exoplanet science from Kepler
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- Conclusive evidence for a population of water-worlds around M-dwarfs remains elusive
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- Architectures of Exoplanetary Systems. III: Eccentricity and Mutual Inclination Distributions of AMD-stable Planetary Systems
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- Transit Timing Variation of Near-Resonance Planetary Pairs: Confirmation of Twelve Multiple Planet Systems
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- The Potential of Planets Orbiting Red Dwarf Stars to Support Oxygenic Photosynthesis and Complex Life
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- The Compositional Diversity of Low-Mass Exoplanets
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- The HARPS search for southern extra-solar planets. XLIII. A compact system of four super-Earth planets orbiting HD 215152
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