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20152025
most citedInterplay of tidal evolution and stellar wind braking in the rotation of stars hosting massive close-in planets

36 citations · 101 across the 8 of their papers we have counts for

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11 papers · 1 filter

astro-ph.EP2025

Extension of the creep tide theory to exoplanet systems with high stellar obliquity. The dynamic tide of CoRoT-3b

Hugo Folonier, Sylvio Ferraz-Mello, Raphael Alves-Silva

This paper extends the creep tide theory to exoplanetary systems with significant obliquities. The extended theory allows us to obtain the stellar and planetary hydrodynamic equili…

astro-ph.EP2022

Creep tide theory. Equations for differentiated bodies with aligned layers

Sylvio Ferraz-Mello, Hugo A. Folonier, Gabriel O. Gomes

The creep tide theory is used to establish the basic equations of the tidal evolution of differentiated bodies formed by aligned homogeneous layers in co-rotation. The mass concent…

astro-ph.EP2021★ 3 cited

Ellipsoidal equilibrium figure and Cassini states of rotating planets and satellites deformed by a tidal potential in the spatial case

Hugo A. Folonier, Gwenaël Boué, Sylvio Ferraz-Mello

The equilibrium figure of an inviscid tidally deformed body is the starting point for the construction of many tidal theories such as Darwinian tidal theories or the hydrodynamical…

astro-ph.EP2021

Creep Tide Model for the 3-Body Problem. The rotational evolution of a circumbinary planet

F. A. Zoppetti, H. Folonier, A. M. Leiva +1

We present a tidal model for treating the rotational evolution in the general three-body problem with arbitrary viscosities, in which all the masses are considered to be extended a…

astro-ph.EP2020

Tidal friction in satellites and planets. The new version of the creep tide theory

Sylvio Ferraz-Mello, Cristian Beaugé, Hugo Alberto Folonier +1

Paper on the creep tide theory and its applications to satellites and planets with emphasis on a new set of differential equations allowing easier numerical studies. The creep tide…

astro-ph.EP2019★ 6 cited

Rotation and figure evolution in the creep tide theory. A new approach and application to Mercury

Gabriel O. Gomes, Hugo A. Folonier, Sylvio Ferraz-Mello

This paper deals with the rotation and figure evolution of a planet near the 3/2 spin-orbit resonance and the exploration of a new formulation of the creep tide theory (Folonier et…