Accretion in the Early Kuiper Belt I. Coagulation and Velocity Evolution
arXiv:astro-ph/9804185 · doi:10.1086/300331
Abstract
We describe planetesimal accretion calculations in the Kuiper Belt. Our evolution code simulates planetesimal growth in a single annulus and includes velocity evolution but not fragmentation. Test results match analytic solutions and duplicate previous simulations at 1 AU. In the Kuiper Belt, simulations without velocity evolution produce a single runaway body with a radius of 1000 km on a time scale inversely proportional to the initial mass in the annulus. Runaway growth occurs in 100 Myr for 10 earth masses and an initial eccentricity of 0.001 in a 6 AU annulus centered at 35 AU. This mass is close to the amount of dusty material expected in a minimum mass solar nebula extrapolated into the Kuiper Belt. Simulations with velocity evolution produce runaway growth on a wide range of time scales. Dynamical friction and viscous stirring increase particle velocities in models with large (8 km radius) initial bodies. This velocity increase delays runaway growth by a factor of two compared to models without velocity evolution. In contrast, collisional damping dominates over dynamical friction and viscous stirring in models with small (80--800 m radius) initial bodies. Collisional damping decreases the time scale to runaway growth by factors of 4--10 relative to constant velocity calculations. Simulations with minimum mass solar nebulae, 10 earth masses, reach runaway growth on time scales of 20-40 Myr with 80 m initial bodies, 50-100 Myr with 800 m bodies, and 75-250 Myr for 8 km initial bodies. These growth times vary linearly with the mass of the annulus but are less sensitive to the initial eccentricity than constant velocity models.
45 pages of text (including 5 tables), 31 pages of figure
Cited by in corpus (77)
- Orbital Evolution of Planets Embedded in a Planetesimal Disk
- A dust ring around Epsilon Eridani: analogue to the young Solar System
- Planet Formation by Coagulation: A Focus on Uranus and Neptune
- Formation of Kuiper Belt Binaries
- Formation of Kuiper Belt Binaries by Gravitational Collapse
- Variations on Debris Disks: Icy Planet Formation at 30-150 AU for 1-3 Solar Mass Main Sequence Stars
- Properties of the Trans-Neptunian Belt: Statistics From the CFHT Survey
- Collisional Cascades in Planetesimal Disks II. Embedded Planets
- Debris Disks: Seeing Dust, Thinking of Planetesimals and Planets
- Accretion in the Early Kuiper Belt II. Fragmentation
- Terrestrial Planet Formation I. The Transition from Oligarchic Growth to Chaotic Growth
- Debris disks as signposts of terrestrial planet formation
- The Size Distribution of Kuiper Belt Objects
- Prospects for Detection of Catastrophic Collisions in Debris Disks
- Detecting the Dusty Debris of Terrestrial Planet Formation
- An Outer Planet Beyond Pluto and Origin of the Trans-Neptunian Belt Architecture
- Keck Pencil-Beam Survey for Faint Kuiper Belt Objects
- A Hybrid N-body--Coagulation Code for Planet Formation
- Gravitational Stirring in Planetary Debris Disks
- Neptune's wild days: constraints from the eccentricity distribution of the classical Kuiper Belt
- Collisional Cascades in Planetesimal Disks I. Stellar Flybys
- A New Hybrid N-Body-Coagulation Code for the Formation of Gas Giant Planets
- Accretion in the Early Outer Solar System
- Rapid Formation of Icy Super-Earths and the Cores of Gas Giant Planets
- Planet Formation in the Outer Solar System
- An 850 micron survey for dust around solar mass stars
- Variations on Debris Disks II. Icy Planet Formation as a Function of the Bulk Properties and Initial Sizes of Planetesimals
- A carefully characterised and tracked Trans-Neptunian survey, the size-distribution of the Plutinos and the number of Neptunian Trojans
- The growth of planetary embryos: orderly, runaway, or oligarchic?
- Numerical Simulations of Collisional Cascades at the Roche Limits of White Dwarf Stars
- A new condition for the transition from runaway to oligarchic growth
- Accretion among preplanetary bodies: the many faces of runaway growth
- Migration of planets embedded in a circumstellar disk
- Collisional and Thermal Emission Models of Debris Disks: Towards Planetesimal Population Properties
- On a Scattered-Disk Origin for the 2003 El61 Collisional Family - an Example of the Importance of Collisions on the Dynamics of Small Bodies
- Coagulation Calculations of Icy Planet Formation at 15--150 AU: A Correlation Between the Maximum Radius and the Slope of the Size Distribution for Transneptunian Objects
- Large Bodies in the Kuiper Belt
- The Collisional Divot in the Kuiper belt Size Distribution
- Models of the Collisional Damping Scenario for Ice Giant Planets and Kuiper Belt Formatio
- The Formation of Pluto's Low Mass Satellites
- Dynamical evolution of planetesimals in protoplanetary disks
- From Disks to Planets
- Long-Term Dynamics and the Orbital Inclinations of the Classical Kuiper Belt Objects
- Formation of Super-Earth Mass Planets at 125-250 AU from a Solar-type Star
- Production of trans-Neptunian binaries through chaos-assisted capture
- Neptune on tiptoes: dynamical histories that preserve the cold classical Kuiper belt
- Water Vapor in Carbon-rich AGB Stars from the Vaporization of Icy Orbiting Bodies
- Termination of planetary accretion due to gap formation
- Variations on Debris Disks III. Collisional Cascades and Giant Impacts in the Terrestrial Zones of Solar-type Stars
- The effect of a strong pressure bump in the Sun's natal disk: Terrestrial planet formation via planetesimal accretion rather than pebble accretion
- Terrestrial planet formation: Dynamical shake-up and the low mass of Mars
- A Change in the Lightcurve of Kuiper Belt Contact Binary (139775) 2001 QG298
- IR Kuiper Belt Constraints
- Dynamical evolution of thin dispersion-dominated planetesimal disks
- Making Planet Nine: Pebble Accretion at 250--750 AU in a Gravitationally Unstable Ring
- Investigation of the asteroid-neutron star collision model for the repeating fast radio bursts
- Planet formation in stellar binaries: Global simulations of planetesimal growth
- Migration processes in the Solar System and their role in the evolution of the Earth and planets
- Forming the Cold Classical Kuiper Belt in a light Disk
- Dust Accumulation near the Magnetospheric Truncation of Protoplanetary Discs around T Tauri Stars
- Planetesimal disk evolution driven by planetesimal-planetesimal gravitational scattering
- Protoplanet Dynamics in a Shear-Dominated Disk
- Comet Hazard to the Earth
- Coagulation Calculations of Icy Planet Formation Around 0.1--0.5~\msun\ Stars: Super-Earths From Large Planetestimals
- The angular momentum of two collided rarefied preplanetesimals and the formation of binaries
- Limits on the number of primordial Scattered Disk objects at Pluto mass and higher from the absence of their dynamical signatures on the present day trans-Neptunian Populations
- Variations on Debris Disks IV. An Improved Analytical Model for Collisional Cascades
- A particle-based hybrid code for planet formation
- Evolution of a ring around the Pluto-Charon binary
- Formation of trans-Neptunian satellite systems at the stage of condensations
- On the Estimation of Circumbinary Orbital Properties
- Conglomeration of kilometre-sized planetesimals
- Collisional Cascade Caclulations for Irregular Satellite Swarms in Fomalhaut b
- Understanding the trans-Neptunian Solar system: Reconciling the results of serendipitous stellar occultations and the inferences from the cratering record
- Hybrid methods in planetesimal dynamics: Formation of protoplanetary systems and the mill condition
- The debris disk - terrestrial planet connection
- Runaway Growth of Planetesimals Revisited: Presenting Criteria Required for Realistic Modeling of Planetesimal Growth