English

A Pluto-Charon Sonata: The Dynamical Architecture of the Circumbinary Satellite System

Earth and Planetary Astrophysics 2019-09-11 v1

Abstract

Using a large suite of n-body simulations, we explore the discovery space for new satellites in the Pluto-Charon system. For the adopted masses and orbits of the known satellites, there are few stable prograde or polar orbits with semimajor axes a1.1 aHa \lesssim 1.1~a_H, where aHa_H is the semimajor axis of the outermost moon Hydra. Small moons with radii rr \lesssim 2 km and a1.1 aHa \lesssim 1.1~a_H are ejected on time scales ranging from several yr to more than 10 Myr. Orbits with a1.1 aHa \gtrsim 1.1~a_H are stable on time scales exceeding 100 Myr. Near-IR and mid-IR imaging with JWST and ground-based occultation campaigns with 2-3-m class telescopes can detect 1-2 km satellites outside the orbit of Hydra. Searches for these moons enable new constraints on the masses of the known satellites and on theories for circumbinary satellite formation.

Keywords

Cite

@article{arxiv.1810.01277,
  title  = {A Pluto-Charon Sonata: The Dynamical Architecture of the Circumbinary Satellite System},
  author = {Scott J. Kenyon and Benjamin C. Bromley},
  journal= {arXiv preprint arXiv:1810.01277},
  year   = {2019}
}

Comments

34 pages of text, 2 tables, 12 figures, submitted to AAS journals, comments welcome. Animations associated with the paper are available at https://www.cfa.harvard.edu/~kenyon/Media/PCSonata.html