Librations and obliquity of the largest moons of Uranus

Fuente: arXiv
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Main Authors: Baland, Rose-Marie, Filice, Valerio, Maistre, Sébastien Le, Trinh, Antony, Yseboodt, Marie, Van Hoolst, Tim
Format: Preprint
Published: 2024
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author Baland, Rose-Marie
Filice, Valerio
Maistre, Sébastien Le
Trinh, Antony
Yseboodt, Marie
Van Hoolst, Tim
author_facet Baland, Rose-Marie
Filice, Valerio
Maistre, Sébastien Le
Trinh, Antony
Yseboodt, Marie
Van Hoolst, Tim
contents Following the discovery of several ocean worlds in the solar system, and the selection of Uranus as the highest priority objective by the Planetary Science and Astrobiology Decadal Survey 2023-2032, the five largest moons of Uranus (Miranda, Ariel, Umbriel, Titania and Oberon) have been receiving renewed attention as they may also harbor a subsurface ocean. We assess how rotation measurements could help confirm the internal differentiation of the bodies and detect internal oceans if any. Because of the time-varying gravitational torque of Uranus on the flattened shape of its synchronous satellites, the latter librate with respect to their mean rotation and precess with a non zero obliquity. For a range of interior models with a rocky core surrounded by a hydrosphere, either solid or divided into an outer ice shell with a liquid ocean underneath, we compute their diurnal libration amplitude and obliquity.
format Preprint
id arxiv_https___arxiv_org_abs_2411_07788
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Librations and obliquity of the largest moons of Uranus
Baland, Rose-Marie
Filice, Valerio
Maistre, Sébastien Le
Trinh, Antony
Yseboodt, Marie
Van Hoolst, Tim
Earth and Planetary Astrophysics
Geophysics
Following the discovery of several ocean worlds in the solar system, and the selection of Uranus as the highest priority objective by the Planetary Science and Astrobiology Decadal Survey 2023-2032, the five largest moons of Uranus (Miranda, Ariel, Umbriel, Titania and Oberon) have been receiving renewed attention as they may also harbor a subsurface ocean. We assess how rotation measurements could help confirm the internal differentiation of the bodies and detect internal oceans if any. Because of the time-varying gravitational torque of Uranus on the flattened shape of its synchronous satellites, the latter librate with respect to their mean rotation and precess with a non zero obliquity. For a range of interior models with a rocky core surrounded by a hydrosphere, either solid or divided into an outer ice shell with a liquid ocean underneath, we compute their diurnal libration amplitude and obliquity.
title Librations and obliquity of the largest moons of Uranus
topic Earth and Planetary Astrophysics
Geophysics
url https://arxiv.org/abs/2411.07788