Context. The 98{\deg}-obliquity of Uranus is commonly attributed to giant impacts that occurred at the end of the planetary formation. This picture, however, is not devoid of weaknesses. Aims. On a billion-year timescale, the tidal migration of the satellites of Jupiter and Saturn has been shown to strongly affect their spin-axis dynamics. We aim to revisit the scenario of tilting Uranus in light of this mechanism. Methods. We analyse the precession spectrum of Uranus and identify the candidate secular spin-orbit resonances that could be responsible for the tilting. We determine the properties of the hypothetical ancient satellite required for a capture and explore the dynamics numerically. Results. If it migrates over 10 Uranus' radi...
Uranus is a special planet because of the large inclination of its spin-axis. The origin of this pro...
Uranus is a special planet because of the large inclination of its spin-axis. The origin of this pro...
The planets' spin states, specifically their tilts and spins, can provide useful constraints to plan...
Context. The 98° obliquity of Uranus is commonly attributed to giant impacts that occurred at the en...
Context. The 98° obliquity of Uranus is commonly attributed to giant impacts that occurred at the en...
Context. The 98° obliquity of Uranus is commonly attributed to giant impacts that occurred at the en...
Context. The 98° obliquity of Uranus is commonly attributed to giant impacts that occurred at the en...
International audienceContext. The 98° obliquity of Uranus is commonly attributed to giant impacts t...
International audienceContext. The 98° obliquity of Uranus is commonly attributed to giant impacts t...
International audienceContext. The 98° obliquity of Uranus is commonly attributed to giant impacts t...
5 pages, 5 figures. Published in The Astrophysical Journal (http://iopscience.iop.org/0004-637X).Int...
5 pages, 5 figures. Published in The Astrophysical Journal (http://iopscience.iop.org/0004-637X).Int...
We show that the existence of prograde equatorial satellites is consistent with a collisional tiltin...
Uranus is a special planet because of the large inclination of its spin-axis. The origin of this pro...
Uranus is a special planet because of the large inclination of its spin-axis. The origin of this pro...
Uranus is a special planet because of the large inclination of its spin-axis. The origin of this pro...
Uranus is a special planet because of the large inclination of its spin-axis. The origin of this pro...
The planets' spin states, specifically their tilts and spins, can provide useful constraints to plan...
Context. The 98° obliquity of Uranus is commonly attributed to giant impacts that occurred at the en...
Context. The 98° obliquity of Uranus is commonly attributed to giant impacts that occurred at the en...
Context. The 98° obliquity of Uranus is commonly attributed to giant impacts that occurred at the en...
Context. The 98° obliquity of Uranus is commonly attributed to giant impacts that occurred at the en...
International audienceContext. The 98° obliquity of Uranus is commonly attributed to giant impacts t...
International audienceContext. The 98° obliquity of Uranus is commonly attributed to giant impacts t...
International audienceContext. The 98° obliquity of Uranus is commonly attributed to giant impacts t...
5 pages, 5 figures. Published in The Astrophysical Journal (http://iopscience.iop.org/0004-637X).Int...
5 pages, 5 figures. Published in The Astrophysical Journal (http://iopscience.iop.org/0004-637X).Int...
We show that the existence of prograde equatorial satellites is consistent with a collisional tiltin...
Uranus is a special planet because of the large inclination of its spin-axis. The origin of this pro...
Uranus is a special planet because of the large inclination of its spin-axis. The origin of this pro...
Uranus is a special planet because of the large inclination of its spin-axis. The origin of this pro...
Uranus is a special planet because of the large inclination of its spin-axis. The origin of this pro...
The planets' spin states, specifically their tilts and spins, can provide useful constraints to plan...