English

New constraints on Saturn's interior from Cassini astrometric data

Earth and Planetary Astrophysics 2017-03-08 v2

Abstract

Using astrometric observations spanning more than a century and including a large set of Cassini data, we determine Saturn's tidal parameters through their current effects on the orbits of the eight main and four coorbital moons. We have used the latter to make the first determination of Saturn's Love number, k2=0.390±0.024k_2=0.390 \pm 0.024, a value larger than the commonly used theoretical value of 0.341 (Gavrilov & Zharkov, 1977), but compatible with more recent models (Helled & Guillot, 2013) for which k2k_2 ranges from 0.355 to 0.382. Depending on the assumed spin for Saturn's interior, the new constraint can lead to a reduction of up to 80% in the number of potential models, offering great opportunities to probe the planet's interior. In addition, significant tidal dissipation within Saturn is confirmed (Lainey et al., 2012) corresponding to a high present-day tidal ratio k2/Q=(1.59±0.74)×104k_2/Q=(1.59 \pm 0.74) \times 10^{-4} and implying fast orbital expansions of the moons. This high dissipation, with no obvious variations for tidal frequencies corresponding to those of Enceladus and Dione, may be explained by viscous friction in a solid core, implying a core viscosity typically ranging between 101410^{14} and 101610^{16} Pa.s (Remus et al., 2012). However, a dissipation increase by one order of magnitude at Rhea's frequency could suggest the existence of an additional, frequency-dependent, dissipation process, possibly from turbulent friction acting on tidal waves in the fluid envelope of Saturn (Ogilvie & Li, 2004). Alternatively, a few of Saturn's moons might themselves experience large tidal dissipation.

Keywords

Cite

@article{arxiv.1510.05870,
  title  = {New constraints on Saturn's interior from Cassini astrometric data},
  author = {Valéry Lainey and Robert A. Jacobson and Radwan Tajeddine and Nicholas J. Cooper and Carl Murray and Vincent Robert and Gabriel Tobie and Tristan Guillot and Stéphane Mathis and Françoise Remus and Josselin Desmars and Jean-Eudes Arlot and Jean-Pierre De Cuyper and Véronique Dehant and Dan Pascu and William Thuillot and Christophe Le Poncin-Lafitte and Jean-Paul Zahn},
  journal= {arXiv preprint arXiv:1510.05870},
  year   = {2017}
}