English

Observed tidal evolution of Kleopatra's outer satellite

Earth and Planetary Astrophysics 2022-01-19 v1

Abstract

The orbit of the outer satellite Alexhelios of (216) Kleopatra is already constrained by adaptive-optics astrometry, obtained with the VLT/SPHERE instrument. However, there is also a preceding occultation event in 1980 attributed to this satellite. Hereinafter, we try to link all observations, spanning 1980--2018. We find the nominal orbit exhibits an unexplained shift by +60+60^\circ in the true longitude. Using both periodogram analysis and an =10\ell = 10 multipole model suitable for the motion of mutually interacting moons about the irregular body, we confirmed that it is not possible to adjust the respective osculating period P2P_2. Instead, we were forced to use a model with tidal dissipation (and increasing orbital periods) to explain the shift. We also analyzed light curves, spanning 1977--2021, and searched for the expected spin deceleration of Kleopatra. According to our best-fit model, the observed period rate is P˙2=(1.8±0.1)108dd1\dot P_2 = (1.8\pm 0.1)\cdot 10^{-8}\,{\rm d}\,{\rm d}^{-1} and the corresponding time lag Δt2=42s\Delta t_2 = 42\,{\rm s} of tides, for the assumed value of the Love number k2=0.3k_2 = 0.3. It is the first detection of tidal evolution for moons orbiting 100-km asteroids. The corresponding dissipation factor QQ is comparable with other terrestrial bodies, albeit at a higher loading frequency 2ωn2|\omega-n|. We also predict a secular evolution of the inner moon, P˙1=5.0108\dot P_1 = 5.0\cdot 10^{-8}, as well as a spin deceleration of Kleopatra, P˙0=1.91012\dot P_0 = 1.9\cdot 10^{-12}. In alternative models, with moons captured in the 3:2 mean-motion resonance or more massive moons, the respective values of Δt2\Delta t_2 are a factor of 2--3 lower. Future astrometric observations by direct imaging or occultations should allow to distinguish between these models, which is important for the internal structure and mechanical properties of (216) Kleopatra.

Keywords

Cite

@article{arxiv.2110.12702,
  title  = {Observed tidal evolution of Kleopatra's outer satellite},
  author = {M. Brož and J. Ďurech and B. Carry and F. Vachier and F. Marchis and J. Hanuš and L. Jorda and P. Vernazza and D. Vokrouhlický and M. Walterová and R. Behrend},
  journal= {arXiv preprint arXiv:2110.12702},
  year   = {2022}
}

Comments

accepted in A&A

R2 v1 2026-06-24T07:09:04.395Z