Observed Binary Fraction Sets Limits on the Extent of Collisional Grinding in the Kuiper Belt
arXiv:1102.5706 · doi:10.1088/0004-6256/141/5/159
Abstract
The size distribution in the cold classical Kuiper belt can be approximated by two idealized power laws: one with steep slope for radii R>R* and one with shallow slope for R<R*, where R*~25-50 km. Previous works suggested that the SFD roll-over at R* can be the result of extensive collisional grinding in the Kuiper belt that led to the catastrophic disruption of most bodies with R<R*. Here we use a new code to test the effect of collisions in the Kuiper belt. We find that the observed roll-over could indeed be explained by collisional grinding provided that the initial mass in large bodies was much larger than the one in the present Kuiper belt, and was dynamically depleted. In addition to the size distribution changes, our code also tracks the effects of collisions on binary systems. We find that it is generally easier to dissolve wide binary systems, such as the ones existing in the cold Kuiper belt today, than to catastrophically disrupt objects with R~R*. Thus, the binary survival sets important limits on the extent of collisional grinding in the Kuiper belt. We find that the extensive collisional grinding required to produce the SFD roll-over at R* would imply a strong gradient of the binary fraction with R and separation, because it is generally easier to dissolve binaries with small components and/or those with wide orbits. The expected binary fraction for R<R* is <0.1. The present observational data do not show such a gradient. Instead, they suggest a large binary fraction of ~0.4 for R=30-40 km. This may indicate that the roll-over was not produced by disruptive collisions, but is instead a fossil remnant of the KBO formation process.
The Astronomical Journal, in press
References in corpus (11)
- Origin of the Structure of the Kuiper Belt during a Dynamical Instability in the Orbits of Uranus and Neptune
- Formation of Kuiper Belt Binaries by Gravitational Collapse
- Steady-State Size Distributions for Collisional Populations: Analytical Solution with Size-Dependent Strength
- Full Numerical Simulations of Catastrophic Small Body Collisions
- Evidence for Two Populations of Classical Transneptunian Objects: The Strong Inclination Dependence of Classical Binaries
- High Albedos of Low Inclination Classical Kuiper Belt Objects
- Destruction of Binary Minor Planets During Neptune Scattering
- Formation of Kuiper-belt binaries through multiple chaotic scattering encounters with low-mass intruders
- The Luminosity Function of the Hot and Cold Kuiper belt Populations
- On a Scattered-Disk Origin for the 2003 El61 Collisional Family - an Example of the Importance of Collisions on the Dynamics of Small Bodies
- Mutual Orbits and Masses of Six Transneptunian Binaries
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