English

Planetary chaotic zone clearing: destinations and timescales

Earth and Planetary Astrophysics 2015-06-23 v1

Abstract

We investigate the orbital evolution of particles in a planet's chaotic zone to determine their final destinations and their timescales of clearing. There are four possible final states of chaotic particles: collision with the planet, collision with the star, escape, or bounded but non-collision orbits. In our investigations, within the framework of the planar circular restricted three body problem for planet-star mass ratio μ\mu in the range 10910^{-9} to 101.510^{-1.5}, we find no particles hitting the star. The relative frequencies of escape and collision with the planet are not scale-free, as they depend upon the size of the planet. For planet radius Rp0.001RHR_p\ge0.001R_H where RHR_H is the planet's Hill radius, we find that most chaotic zone particles collide with the planet for μ105\mu\lesssim10^{-5}; particle scattering to large distances is significant only for higher mass planets. For fixed ratio Rp/RHR_p/R_H, the particle clearing timescale, TclT_{cl}, has a broken power-law dependence on μ\mu. A shallower power-law, Tclμ1/3T_{cl}\sim \mu^{-{1/3}}, prevails at small μ\mu where particles are cleared primarily by collisions with the planet; a steeper power law, Tclμ3/2T_{cl}\sim\mu^{-{3/2}}, prevails at larger μ\mu where scattering dominates the particle loss. In the limit of vanishing planet radius, we find Tcl0.024μ32T_{cl}\approx0.024\mu^{-{3\over2}}. The interior and exterior boundaries of the annular zone in which chaotic particles are cleared are increasingly asymmetric about the planet's orbit for larger planet masses; the inner boundary coincides well with the classical first order resonance overlap zone, Δacl,int1.2μ0.28ap\Delta a_{cl,int}\simeq1.2\mu^{0.28}a_p; the outer boundary is better described by Δacl,ext1.7μ0.31ap\Delta a_{cl,ext}\simeq1.7\mu^{0.31}a_p, where apa_p is the planet-star separation.

Keywords

Cite

@article{arxiv.1411.1378,
  title  = {Planetary chaotic zone clearing: destinations and timescales},
  author = {Sarah Morrison and Renu Malhotra},
  journal= {arXiv preprint arXiv:1411.1378},
  year   = {2015}
}

Comments

20 pages, 7 figures; accepted for publication in ApJ

R2 v1 2026-06-22T06:49:21.270Z