The Solar System as an Exoplanetary System
arXiv:1508.00931 · doi:10.1088/0004-637X/810/2/105
Abstract
With the availability of considerably more data, we revisit the question of how special our Solar System is, compared to observed exoplanetary systems. To this goal, we employ a mathematical transformation that allows for a meaningful, statistical comparison. We find that the masses and densities of the giant planets in our Solar System are very typical, as is the age of the Solar System. While the orbital location of Jupiter is somewhat of an outlier, this is most likely due to strong selection effects towards short-period planets. The eccentricities of the planets in our Solar System are relatively small compared to those in observed exosolar systems, but still consistent with the expectations for an 8-planet system (and could, in addition, reflect a selection bias towards high-eccentricity planets). The two characteristics of the Solar System that we find to be most special are the lack of super-Earths with orbital periods of days to months and the general lack of planets inside of the orbital radius of Mercury. Overall, we conclude that in terms of its broad characteristics our Solar System is not expected to be extremely rare, allowing for a level of optimism in the search for extrasolar life.
Accepted for publication in ApJ
References in corpus (29)
- Direct Imaging of Multiple Planets Orbiting the Star HR 8799
- Mass-Radius Relationships for Solid Exoplanets
- The Occurrence and Mass Distribution of Close-in Super-Earths, Neptunes, and Jupiters
- One or more bound planets per Milky Way star from microlensing observations
- Formation of Hot Planets by a combination of planet scattering, tidal circularization, and Kozai mechanism
- Migration and the formation of systems of hot super-Earths and Neptunes
- Models of the in situ formation of detected extrasolar giant planets
- Terrestrial Planet Occurrence Rates for the Kepler GK Dwarf Sample
- Three regimes of extrasolar planets inferred from host star metallicities
- Detailed Models of super-Earths: How well can we infer bulk properties?
- Eccentricity from transit photometry: small planets in Kepler multi-planet systems have low eccentricities
- Exploring Exoplanet Populations with NASA's Kepler Mission
- Precise Radial Velocities of Giant Stars VII. Occurrence Rate of Giant Extrasolar Planets as a Function of Mass and Metallicity
- The Exoplanet Orbit Database II: Updates to exoplanets.org
- The Mass of Kepler-93b and The Composition of Terrestrial Planets
- Inferring the eccentricity distribution
- Hubble Space Telescope Near-IR Transmission Spectroscopy of the Super-Earth HD 97658b
- On the Eccentricity Distribution of Exoplanets from Radial Velocity Surveys
- Hot super-Earths and giant planet cores from different migration histories
- Formation of close in Super-Earths \& Mini-Neptunes: Required Disk Masses \& Their Implications
- Jupiter's Decisive Role in the Inner Solar System's Early Evolution
- Do Two Temperature Debris Disks Have Multiple Belts?
- Most Sub-Arcsecond Companions of Kepler Exoplanet Candidate Host Stars are Gravitationally Bound
- Advances in exoplanet science from Kepler
- Occurrence and core-envelope structure of 1--4x Earth-size planets around Sun-like stars
- The Exoplanet Orbital Eccentricity - Multiplicity Relation and the Solar System
- Low False-Positive Rate of Kepler Candidates Estimated From A Combination Of Spitzer And Follow-Up Observations
- Terrestrial Planet Formation in the Presence of Migrating Super-earths
- The Metallicity Dependence of Giant Planet Incidence
Cited by in corpus (18)
- The Exoplanet Population Observation Simulator. I - The Inner Edges of Planetary Systems
- Origin of Earth's water: sources and constraints
- Characterizing Exoplanet Habitability
- Solar System Formation in the Context of Extra-Solar Planets
- Heavy metal rules. I. Exoplanet incidence and metallicity
- The Fundamental Connections Between the Solar System and Exoplanetary Science
- Chemical inhomogeneities in the Pleiades: signatures of rocky-forming material in stellar atmospheres
- The Demographics of Terrestrial Planets in the Venus Zone
- Formation of Terrestrial Planets
- On the role of resonances in polluting white dwarfs by asteroids
- Asteroid impacts on terrestrial planets: The effects of super-Earths and the role of the resonance
- TKS V. Twin sub-Neptunes Transiting the Nearby G Star HD 63935
- The growth of super-Earths: the importance of a self-consistent treatment of disc structures and pebble accretion
- On the Formation of Super-Earths with Implications for the Solar System
- Planet formation: key mechanisms and global models
- Asteroids and life: How special is the solar system?
- Simulations of Triple Microlensing Events I: Detectability of a scaled Sun-Jupiter-Saturn System
- What the Solar System Can Teach Us About Rocky Exoplanets