• Title of article

    Tidal disruption of strengthless rubble piles—a dimensional analysis

  • Author/Authors

    Hahn، نويسنده , , Joseph M. and Rettig، نويسنده , , Terrence W.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 1998
  • Pages
    6
  • From page
    1677
  • To page
    1682
  • Abstract
    A relatively simple prescription for estimating the number of debris clumps n that form after a catastrophic tidal disruption event is presented. Following the breakup event, it is assumed that the individual debris particles follow keplerian orbits about the planet until the debrisʹ gravitational contraction timescale tc becomes shorter than its orbital spreading timescale ts. When the two timescales become comparable, self-gravity breaks up the debris train into n ∼ LD clumps, which is the debris length/diameter ratio at that instant. The clumps subsequently orbit the planet independent of each other. The predicted number of clumps n is in good agreement with more sophisticated N-body treatments of tidal breakup for parabolic encounters, and the dependence of n upon the progenitorʹs density as well as its orbit is also mapped out for hyperbolic encounters. These findings may be used to further constrain both the orbits and densities of the tidally disrupted bodies that struck Callisto and Ganymede. A cursory analysis shows that the Gomul and Gipul crater chains on Callisto, which have the greatest number of craters among the known chains, were formed by projectiles having comet-like densities estimated at ϱ0 ≲ 1 gm/cm3.
  • Journal title
    PLANETARY AND SPACE SCIENCE
  • Serial Year
    1998
  • Journal title
    PLANETARY AND SPACE SCIENCE
  • Record number

    2308419