Collisional Grooming Models of the Kuiper Belt Dust Cloud
arXiv:1008.0904 · doi:10.1088/0004-6256/140/4/1007
Abstract
We modeled the 3-D structure of the Kuiper Belt dust cloud at four different dust production rates, incorporating both planet-dust interactions and grain-grain collisions using the collisional grooming algorithm. Simulated images of a model with a face-on optical depth of ~10^-4 primarily show an azimuthally-symmetric ring at 40-47 AU in submillimeter and infrared wavelengths; this ring is associated with the cold classical Kuiper Belt. For models with lower optical depths (10^-6 and 10^-7), synthetic infrared images show that the ring widens and a gap opens in the ring at the location of of Neptune; this feature is caused by trapping of dust grains in Neptune's mean motion resonances. At low optical depths, a secondary ring also appears associated with the hole cleared in the center of the disk by Saturn. Our simulations, which incorporate 25 different grain sizes, illustrate that grain-grain collisions are important in sculpting today's Kuiper Belt dust, and probably other aspects of the Solar System dust complex; collisions erase all signs of azimuthal asymmetry from the submillimeter image of the disk at every dust level we considered. The model images switch from being dominated by resonantly-trapped small grains ("transport dominated") to being dominated by the birth ring ("collision dominated") when the optical depth reaches a critical value of tau ~ v/c, where v is the local Keplerian speed.
31 pages, including 9 figures
References in corpus (3)
Cited by in corpus (47)
- Debris Disks: Structure, Composition, and Variability
- Debris disk size distributions: steady state collisional evolution with P-R drag and other loss processes
- Direct Imaging Confirmation and Characterization of a Dust-Enshrouded Candidate Exoplanet Orbiting Fomalhaut
- Disk Radii and Grain Sizes in Herschel-Resolved Debris Disks
- Millimeter Emission Structure in the first ALMA Image of the AU Mic Debris Disk
- Exo--Zodiacal Dust Levels for Nearby Main Sequence Stars
- A near-infrared interferometric survey of debris-disc stars. IV. An unbiased sample of 92 southern stars observed in H-band with VLTI/PIONIER
- Spitzer Evidence for a Late Heavy Bombardment and the Formation of Urelites in η Corvi at ~1 Gyr
- Resolved Submillimeter Observations of the HR 8799 and HD 107146 Debris Disks
- A 5 Micron Image of beta Pictoris b at a Sub-Jupiter Projected Separation: Evidence for a Misalignment Between the Planet and the Inner, Warped Disk
- An improved model of the Edgeworth-Kuiper debris disk
- Herschel's "Cold Debris Disks": Background Galaxies or Quiescent Rims of Planetary Systems?
- The search for habitable worlds: 1. The viability of a starshade mission
- SMACK: A New Algorithm for Modeling Collisions and Dynamics of Planetesimals in Debris Disks
- Solar System Physics for Exoplanet Research
- LIDT-DD: A new self-consistent debris disc model including radiation pressure and coupling collisional and dynamical evolution
- Peter Pan Disks: Long-lived Accretion Disks Around Young M Stars
- Planet Signatures in Collisionally Active Debris Discs: scattered light images
- Millimeter Imaging of the beta Pictoris Debris Disk: Evidence for a Planetesimal Belt
- Collisional modelling of the AU Microscopii debris disc
- The Epsilon Eridani System Resolved by Millimeter Interferometry
- Modeling Collisional Cascades In Debris Disks: The Numerical Method
- A SMACK Model of Colliding Planetesimals in the Pictoris Debris Disk
- Warm exo-Zodi from cool exo-Kuiper belts: the significance of P-R drag and the inference of intervening planets
- Resolved Millimeter-Wavelength Observations of Debris Disks around Solar-Type Stars
- Fomalhaut b as a Dust Cloud: Frequent Collisions within the Fomalhaut Disk
- The Pseudo-zodi Problem for Edge-on Planetary Systems
- The Inner 25 AU Debris Distribution in the epsilon Eri System
- Will New Horizons see dust clumps in the Edgeworth-Kuiper belt?
- Keck/NIRC2 Imaging of the Warped, Asymmetric Debris Disk around HD 32297
- A new code to study structures in collisionally active, perturbed debris discs. Application to binaries
- Confirming the Primarily Smooth Structure of the Vega Debris Disk at Millimeter Wavelengths
- Finding the Needles in the Haystacks: High-Fidelity Models of the Modern and Archean Solar System for Simulating Exoplanet Observations
- The Transit Light Curve of an Exozodiacal Dust Cloud
- Grain Size segregation in debris discs
- Collisions and drag in debris discs with eccentric parent belts
- Capture and evolution of dust in planetary mean-motion resonances: a fast, semi-analytic method for generating resonantly trapped disk images
- Collision Probabilities in the Edgeworth-Kuiper belt
- The Inner Debris Structure in the Fomalhaut Planetary System
- Multiwavelength Vertical Structure in the AU Mic Debris Disk: Characterizing the Collisional Cascade
- Impact of planetesimal eccentricities and material strength on the appearance of eccentric debris disks
- A PR drag origin for the Fomalhaut disk's pervasive inner dust: constraints on collisional strengths, icy composition, and embedded planets
- ExoVista: A Suite of Planetary System Models for Exoplanet Studies
- Detection and Characterization of Extrasolar Planets through Mean-Motion Resonances. II. The Effect of the Planet's Orbital Eccentricity on Debris Disk Structures
- Locations of stationary/periodic solutions in mean motion resonances according to properties of dust grains
- The Debiased Kuiper Belt: Our Solar System as a Debris Disk
- Resonant structures in exozodiacal clouds created by exo-Earths in the habitable zone of late-type stars