Sedna and the Oort Cloud Around a Migrating Sun
arXiv:1108.1570 · doi:10.1016/j.icarus.2011.07.037
Abstract
Recent numerical simulations have demonstrated that the Sun's dynamical history within the Milky Way may be much more complex than that suggested by its current low peculiar velocity. In particular, the Sun may have radially migrated through the galactic disk by up to 5-6 kpc. This has important ramifications for the structure of the Oort Cloud, as it means that the solar system may have experienced tidal and stellar perturbations that were significantly different from its current local galactic environment. To characterize the effects of solar migration within the Milky Way, we use direct numerical simulations to model the formation of an Oort Cloud around stars that end up on solar-type orbits in a galactic-scale simulation of a Milky Way-like disk formation. Surprisingly, our simulations indicate that Sedna's orbit may belong to the classical Oort Cloud. Contrary to previous understanding, we show that field star encounters play a pivotal role in setting the Oort Cloud's extreme inner edge, and due to their stochastic nature this inner edge sometimes extends to Sedna's orbit. The Sun's galactic migration heightens the chance of powerful stellar passages, and Sedna production occurs around ~20-30% of the solar-like stars we study. Considering the entire Oort Cloud, we find its median distance depends on the minimum galactocentric distance attained during the Sun's orbital history. The inner edge also shows a similar dependence but with increased scatter due to the effects of powerful stellar encounters. Both of these Oort Cloud parameters can vary by an order of magnitude and are usually overestimated by an Oort Cloud formation model that assumes a fixed galactic environment. In addition, the amount of material trapped in outer Oort Cloud orbits can be extremely low and may present difficulties for models of Oort Cloud formation and long-period comet production.
54 pages, 3 tables, 18 figures, accepted to Icarus
References in corpus (9)
- Trigonometric Parallaxes of Massive Star Forming Regions: VI. Galactic Structure, Fundamental Parameters and Non-Circular Motions
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- Riding the Spiral Waves: Implications of Stellar Migration for the Properties of Galactic Disks
- Origin of the Structure of the Kuiper Belt during a Dynamical Instability in the Orbits of Uranus and Neptune
- Dynamics of the giant planets of the solar system in the gaseous proto-planetary disk and relationship to the current orbital architecture
- Radial mixing and the transition between the thick and thin Galactic discs
- The Formation of the Oort Cloud in Open Cluster Environments
- Injection of Oort Cloud Comets: The Fundamental Role of Stellar Perturbations
- A Search for Distant Solar System Bodies in the Region of Sedna
Cited by in corpus (35)
- Origin and Evolution of Short-Period Comets
- Cross Sections for Planetary Systems Interacting with Passing Stars and Binaries
- Hydrogen delivery onto white dwarfs from remnant exo-Oort cloud comets
- Origin and evolution of long-period comets
- Tuning the Legacy Survey of Space and Time (LSST) Observing Strategy for Solar System Science
- New Extreme Trans-Neptunian Objects: Towards a Super-Earth in the Outer Solar System
- Evaporation and Accretion of Extrasolar Comets Following White Dwarf Kicks
- A Possible Divot in the Size Distribution of the Kuiper Belt's Scattering Objects
- Realistic Detectability of Close Interstellar Comets
- Eight billion asteroids in the Oort cloud
- Consequences of a Distant Massive Planet on the Large Semi-major Axis Trans-Neptunian Objects
- Long-term orbital dynamics of trans-Neptunian objects
- Oort cloud Ecology II: Extra-solar Oort clouds and the origin of asteroidal interlopers
- Capture of exocomets and the erosion of the Oort cloud due to stellar encounters in the Galaxy
- The rate of stellar encounters along a migrating orbit of the Sun
- Oort cloud Ecology II: The chronology of the formation of the Oort cloud
- A hypothesis for the rapid formation of planets
- OSSOS XV: Probing the Distant Solar System with Observed Scattering TNOs
- Exploring the role of the Sun's motion in terrestrial comet impacts
- The Structure of the Distant Kuiper Belt in a Nice Model Scenario
- The stability in the most external region of the Oort Cloud: The evolution of the ejected comets
- Injection of Inner Oort Cloud Objects Into the Distant Kuiper Belt by Planet Nine
- Galactic perturbations on the population of wide binary stars with exoplanets
- Is There an Earth-like Planet in the Distant Kuiper Belt?
- Oort cloud asteroids: Collisional evolution, the Nice Model, and the Grand Tack
- Orbital precession in the distant solar system; further constraining the Planet Nine hypothesis with numerical simulations
- Machine Learning Classification of Kuiper Belt Populations
- Outer Solar System Perihelion Gap Formation Through Interactions with a Hypothetical Distant Giant Planet
- Orbital dynamics landscape near the most distant known trans-Neptunian objects
- Transient Jupiter Co-orbitals from Solar System Sources
- Analysis of Mission Opportunities to Sedna in 2029-2034
- The fastest routes of approach to dwarf planet Sedna for study its surface and composition at the close range
- OSSOS. XXIII. 2013 VZ70 and the Temporary Coorbitals of the Giant Planet
- Signatures of a Distant Planet on the Inclination Distribution of the Detached Kuiper Belt
- Habitability on local, Galactic and cosmological scales