Galactic tides in the Solar System within a non-axisymmetric Milky Way model adjusted to Gaia data
Alexandre Bougakov, Yassin Rany Khalil, Marc Fouchard, Melaine Saillenfest, Benoit Famaey, Paola Di Matteo, Misha Haywood
Abstract
Context. Galactic tides are external differential forces acting on extended systems immersed in the Galactic potential. They play a key role in the dynamics of comets in the Oort cloud. Aims. We aim to establish the strength of Galactic tides from the non-axisymmetric potential of the Milky Way revealed by the Gaia mission, and how this strength evolves along the Galactic trajectory of the Solar System. Methods. We derived expressions for Galactic tide parameters independently of any simplified trajectory for a star in the Galaxy or any specific symmetry of the Galactic potential. We obtained six parameters, G1 to G6, that quantify the influence of tides. Using the most up-to-date Galactic potential model, extended here to three dimensions, we studied the time evolution of these parameters along the Sun's trajectory using a statistical approach. Results. Even for Galactic trajectories featuring modest radial and vertical excursions, as investigated here, the dominant Galactic parameter, G3, is found to vary by an order of magnitude along the solar trajectory. G1 and G2 reach up to about one half and one quarter, respectively, of G3 along the solar trajectory, whilst parameters G4 to G6 reach up to one tenth of G3. Conclusions. Contrary to what is often assumed, all Galactic tide parameters vary widely along the Galactic trajectory of the Solar System. Two consequences can be expected: First, G3 directly affects the flux of observable long-period comets and the extent of the fossilised Sednoids region; second, G1 and G2, and to a lesser extent, G4 to G6, break the integrability of the dynamics, potentially affecting the long-term structure of the Oort cloud. Additionally, the new parameters G4 to G6, while small for the Solar System, may strongly impact extrasolar systems with a large out-of-the-plane excursion in the Galaxy.
Create a lesson
Related papers
POSEIDON III: The Aligned Orbit of the Hot Neptune Around the Hot Star WASP-195
Juan I. Espinoza-Retamal, Joshua N. Winn, Rafael Brahm et al.
The Ultraviolet Spectrograph on ESA's Jupiter Icy Moons Explorer Mission (JUICE-UVS)
Kurt D. Retherford, Philippa M. Molyneux, Thomas K. Greathouse et al.
Revisiting orbital recurrence in the dimmings of Boyajian's star (KIC~8462852)
Hector Socas-Navarro
The Hill sphere transits of Beta Pictoris c and the search for another 1981-like event
V. E. C. Bakker, M. A. Kenworthy, R. Stuik et al.
Drift-dominated dust evolution. A multiwavelength analysis of dust rings in CY Tau and DoAr25
Anastasia Topalidou, Nienke van der Marel, Paola Pinilla et al.
Photometric characterization of near-Earth asteroids: rotation, taxonomy, and candidate evidence for internal cohesion
A. Carbognani, A. Buzzoni, M. Barbetta et al.