English

Rotational Mass Shedding from Asteroid (6478) Gault

Earth and Planetary Astrophysics 2021-04-14 v2

Abstract

The \sim4 km diameter main belt asteroid 6478 Gault has ejected dust intermittently since at least 2013. The character of the emission, including its episodic nature and the low speed of the ejected particles (VV \sim 0.15 m s1^{-1}), is most consistent with mass loss from a body rotating near rotational breakup. Owing to dust contamination of the nucleus signal, this conclusion has not yet been confirmed. To test this idea, we have obtained new images of Gault in August 2020, in the absence of dust. Our photometry shows a lightcurve having a very small amplitude (maximum 0.05\sim 0.05 mag) and a periodicity of 2.55±0.10 2.55 \pm 0.10 hours. The new observations are consistent with a model in which Gault is rotating near breakup, with centrifugal forces responsible for its episodic mass loss. Approximated as a strengthless (fluid) spherical body, the implied density is ρ\rho = 1700 kg m3^{-3}. We use the Froude number FrFr, defined here as the ratio between centrifugal force and gravitational force, as a way to investigate mass loss regimes in fast spinning asteroids and find that mass shedding starts at Fr0.5Fr \sim 0.5.

Keywords

Cite

@article{arxiv.2103.05601,
  title  = {Rotational Mass Shedding from Asteroid (6478) Gault},
  author = {J. X. Luu and D. C. Jewitt and M. Mutchler and J. Agarwal and Y. Kim and J. Li and H. Weaver},
  journal= {arXiv preprint arXiv:2103.05601},
  year   = {2021}
}

Comments

26 pages, 7 figures; typos corrected, 1 revised figure

R2 v1 2026-06-23T23:55:48.340Z