collaborators

5 papers

astro-ph.EP2025

An analytical framework for atmospheric tides on rocky planets. I. Formulation

Pierre Auclair-Desrotour, Mohammad Farhat, Gwenaël Boué +1

Atmospheric thermal tides arise from the diurnal contrast in stellar irradiation. They exert a significant influence on the long-term rotational evolution of rocky planets because…

astro-ph.EP2024

Anisotropic tidal dissipation in misaligned planetary systems

Pierre Auclair-Desrotour, Gwenaël Boué, Baptiste Loire

Tides are the main driving force behind the long-term evolution of planetary systems. The associated energy dissipation and momentum exchanges are commonly described by Love number…

astro-ph.EP2024

Tides on Lava Worlds: Application to Close-in Exoplanets and the Early Earth-Moon System

Mohammad Farhat, Pierre Auclair-Desrotour, Gwenaël Boué +2

Understanding the physics of planetary magma oceans has been the subject of growing efforts, in light of the increasing abundance of Solar system samples and extrasolar surveys. A…

astro-ph.EP2024

Thermal tides on rocky planets through a novel fully analytical solution

Pierre Auclair-Desrotour, Mohammad Farhat, Gwenaël Boué +2

Thermal tides are atmospheric tides caused by variations in day-night insolation, similar to gravitational tides but with key differences. While both result in delayed mass redistr…

astro-ph.EP2024

Tidal evolution of Earth-like planets in the habitable zone of low-mass stars

E. F. S. Valente, A. C. M. Correia, P. Auclair-Desrotour +2

Earth-like planets in the habitable zone of low-mass stars undergo strong tidal effects that modify their spin states. These planets are expected to host dense atmospheres that can…