4.5 Article

Two dynamical classes of Centaurs

Journal

ICARUS
Volume 203, Issue 1, Pages 155-163

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.icarus.2009.03.044

Keywords

Centaurs; Comets, Dynamics; Comets, Origin

Funding

  1. NASA [NNG05GH44G, NNX08AQ65G]
  2. NASA [NNX08AQ65G, 95702] Funding Source: Federal RePORTER

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The Centaurs are a transient population of small bodies in the outer Solar System whose orbits are strongly chaotic. These objects typically suffer significant changes of orbital parameters on timescales of a few thousand years, and their orbital evolution exhibits two types of behaviors described qualitatively as random walls and resonance-sticking. We have analyzed the chaotic behavior of the known Centaurs. Our analysis has revealed that the two types of chaotic evolution are quantitatively distinguishable: (1) the random walk type behavior is well described by so-called generalized diffusion in which the rms deviation of the semimajor axis grows with time t as similar to t '', with Hurst exponent H in the range 0.22-0.95, however (2) orbital evolution dominated by intermittent resonance sticking, with sudden jumps from one mean motion resonance to another, has poorly defined H. We further find that these two types of behavior are correlated with Centaur dynamical lifetime: most Centaurs whose dynamical lifetime is less than similar to 22 Myr exhibit generalized diffusion, whereas roost Centaurs of longer dynamical lifetimes exhibit intermittent resonance sticking. We also find that Centaurs in the diffusing class are likely to evolve into Jupiter-family comets during their dynamical lifetimes, while those in the resonance-hopping class do not. (C) 2009 Elsevier Inc. All rights reserved.

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