Testing In Situ Assembly with the Kepler Planet Candidate Sample
arXiv:1301.7431 · doi:10.1088/0004-637X/775/1/53
Abstract
We present a Monte Carlo model for the structure of low mass (total mass < 25 earth mass) planetary systems that form by the in situ gravitational assembly of planetary embryos into final planets. Our model includes distributions of mass, eccentricity, inclination and period spacing that are based on the simulation of a disk of 20 earth masses, forming planets around a solar mass star, and assuming a power law surface density distribution . The output of the Monte Carlo model is then subjected to the selection effects that mimic the observations of a transiting planet search such as that performed by the Kepler satellite. The resulting comparison of the output to the properties of the observed sample yields an encouraging agreement in terms of the relative frequencies of multiple planet systems and the distribution of the mutual inclinations, when moderate tidal circularisation is taken into account. The broad features of the period distribution and radius distribution can also be matched within this framework, although the model underpredicts the distribution of small period ratios. This likely indicates that some dissipation is still required in the formation process. The most striking deviation between model and observations is in the ratio of single to multiple systems, in that there are roughly 50% more single planet candidates observed than are produced in any model population. This suggests that some systems must suffer additional attrition to reduce the number of planets or increase the range of inclinations.
19 pages, 22 figures. submitted to ApJ
References in corpus (18)
- Direct Imaging of Multiple Planets Orbiting the Star HR 8799
- The false positive rate of Kepler and the occurrence of planets
- Optical Images of an Exosolar Planet 25 Light Years from Earth
- DHP Framework: Digital Health Passports Using Blockchain -- Use case on international tourism during the COVID-19 pandemic
- Mass-Radius Relationships for Solid Exoplanets
- The Occurrence and Mass Distribution of Close-in Super-Earths, Neptunes, and Jupiters
- KEPLER's First Rocky Planet: Kepler-10b
- Migration and the formation of systems of hot super-Earths and Neptunes
- Microlens OGLE-2005-BLG-169 Implies Cool Neptune-Like Planets are Common
- Halting Type I planet migration in non-isothermal disks
- Resonant Repulsion of Kepler Planet Pairs
- SOPHIE velocimetry of Kepler transit candidates VII. A false-positive rate of 35% for Kepler close-in giant exoplanet candidates
- Chaotic diffusion in the Solar System
- Habitable-zone super-Earth candidate in a six-planet system around the K2.5V star HD 40307
- Diffusive Migration of Low-Mass Proto-planets in Turbulent Disks
- Dynamical Shakeup of Planetary Systems II. N-body simulations of Solar System terrestrial planet formation induced by secular resonance sweeping
- Discovery of a Very Bright, Nearby Gravitational Microlensing Event
- Kepler's Missing Planets
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- Secular Effects of Tidal Damping in Compact Planetary Systems
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- The Preservation of Super Earths and the Emergence of Gas Giants after Their Progenitor Cores have Entered the Pebble Isolation Phase
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- The Origin of Heavy Element Content Trend in Giant Planets via Core Accretion
- Planetary Architectures in Interacting Stellar Environments
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- Terrestrial Planets Formation under Migration: the Systems near 4:2:1 Mean Motion Resonance
- The Dynamics of Tightly-packed Planetary Systems in the Presence of an Outer Planet: case studies using Kepler-11 and Kepler-90
- Super-Earths as Failed Cores in Orbital Migration Traps
- In Situ and Ex Situ Formation Models of Kepler 11 Planets
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