Long-lived planetesimal discs
arXiv:0909.3850 · doi:10.1111/j.1365-2966.2009.15739.x
Abstract
We investigate the survival of planetesimal discs over Gyr timescales, using a unified approach that is applicable to all Keplerian discs of solid bodies -- dust grains, asteroids, planets, etc. Planetesimal discs can be characterized locally by four parameters: surface density, semi-major axis, planetesimal size and planetesimal radial velocity dispersion. Any planetesimal disc must have survived all dynamical processes, including gravitational instability, dynamical chaos, gravitational scattering, physical collisions, and radiation forces, that would lead to significant evolution over its lifetime. These processes lead to a rich set of constraints that strongly restrict the possible properties of long-lived discs. Within this framework, we also discuss the detection of planetesimal discs using radial velocity measurements, transits, microlensing, and the infrared emission from the planetesimals themselves or from dust generated by planetesimal collisions.
31 pages (single column, font size 10), 10 figures, 2 tables. Accepted by MNRAS. This amended version corrects minor errors in Figures 3, 4 and 5 (erratum submitted to MNRAS). Text and conclusions unchanged.
References in corpus (15)
- Direct Imaging of Multiple Planets Orbiting the Star HR 8799
- Optical Images of an Exosolar Planet 25 Light Years from Earth
- Debris Disk Evolution Around A Stars
- Transience of hot dust around sun-like stars
- Spitzer IRS Spectroscopy of IRAS-Discovered Debris Disks
- The Size Distributions of Asteroid Families in the SDSS Moving Object Catalog 4
- Long-Term Collisional Evolution of Debris Disks
- Steady-State Size Distributions for Collisional Populations: Analytical Solution with Size-Dependent Strength
- Collisional processes and size distribution in spatially extended debris discs
- Chaotic diffusion in the Solar System
- The Dust Properties of Eight Debris Disk Candidates as Determined by Submillimeter Photometry
- On the Relationship Between Debris Disks and Planets
- The discovery of new warm debris disks around F-type stars
- Spitzer/MIPS Limits on Asteroidal Dust in the Pulsar Planetary System PSR B1257+1
- Limits of Binaries That Can Be Characterized by Gravitational Microlensing
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- Age Determination for 346 Nearby Stars in the Herschel DEBRIS Survey
- Collisional Evolution of Irregular Satellite Swarms: Detectable Dust around Solar System and Extrasolar Planets
- Variations on Debris Disks II. Icy Planet Formation as a Function of the Bulk Properties and Initial Sizes of Planetesimals
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- Mini-Oort clouds: Compact isotropic planetesimal clouds from planet-planet scattering
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- The lifetimes of planetary debris discs around white dwarfs
- Debris discs around M stars: non-existence versus non-detection
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- Evolution from protoplanetary to debris discs: The transition disc around HD 166191
- A CHEOPS White Dwarf Transit Search
- How dusty is alpha Centauri? Excess or non-excess over the infrared photospheres of main-sequence stars
- A PR drag origin for the Fomalhaut disk's pervasive inner dust: constraints on collisional strengths, icy composition, and embedded planets
- Debris Disks: Probing Planet Formation
- ISPY -- NaCo Imaging Survey for Planets around Young stars. Discovery of an M dwarf in the gap between HD 193571 and its debris ring
- Estimating the mass of the debris disc in HD 69830
- Pulsar Timing Signatures of Circumbinary Asteroid Belts
- Planetary system architectures with low-mass inner planets: Direct imaging exploration of mature systems beyond 1 au
- Detecting Extrasolar Asteroid Belts Through Their Microlensing Signatures
- Three new late-type stellar companions to very dusty WISE debris disks identified with VLT/SPHERE imaging
- Direct Imaging of Irregular Satellite Disks in Scattered Light