A compact formula for the stress tensor inside a self-gravitating, triaxial ellipsoid in an arbitrary rotation state is given. It contains no singularity in the incompressible medium limit. The stress tensor and the quality factor model are used to derive a solution for the energy dissipation resulting in the damping (short-axis mode) or excitation (long axis) of wobbling. In the limit of an ellipsoid of revolution, we compare our solution with earlier ones and show that, with appropriate corrections, the differences in damping times estimates are much smaller than it has been claimed
International audienceContext. Seasonal variations and climate stability of a planet are very sensit...
We study the dynamics of two homogeneous rigid ellipsoids subject to their mutual gravitational infl...
A way is described to find the initial conditions for the simplest three-dimensional periodic motio...
Internal stresses dissipate energy in a rotating body, unless it spins about one of its principal ax...
International audienceThe tilt-over mode in a precessing triaxial ellipsoid is studied theoretically...
AbstractAn explicit analytical solution is obtained for the stress field in an accreted triaxial ell...
In his paper I examine influence of small gravitational torque on rotation of elongated triaxial bod...
International audienceMotivated by modelling rotating turbulence in planetary fluid layers, we inves...
The dynamical environment on the surface of a rotating, massive ellipsoid is studied, with applicati...
Whenever a freely spinning body is found in a complex rotational state, this means that either the b...
International audienceThe full non-linear evolution of the tidal instability is studied numerically ...
Celestial bodies approximated with rigid triaxial ellipsoids in a two-body system can rotate chaotic...
The second and final step in the development of first-order secular solutions to rotational motions ...
A theoretical study was made of the angular motions of spinning bodies in space. The analysis was ba...
A semi-analytical model of the Yarkovsky–O’Keefe–Radzievskii–Paddack (YORP) effect on an asteroid sp...
International audienceContext. Seasonal variations and climate stability of a planet are very sensit...
We study the dynamics of two homogeneous rigid ellipsoids subject to their mutual gravitational infl...
A way is described to find the initial conditions for the simplest three-dimensional periodic motio...
Internal stresses dissipate energy in a rotating body, unless it spins about one of its principal ax...
International audienceThe tilt-over mode in a precessing triaxial ellipsoid is studied theoretically...
AbstractAn explicit analytical solution is obtained for the stress field in an accreted triaxial ell...
In his paper I examine influence of small gravitational torque on rotation of elongated triaxial bod...
International audienceMotivated by modelling rotating turbulence in planetary fluid layers, we inves...
The dynamical environment on the surface of a rotating, massive ellipsoid is studied, with applicati...
Whenever a freely spinning body is found in a complex rotational state, this means that either the b...
International audienceThe full non-linear evolution of the tidal instability is studied numerically ...
Celestial bodies approximated with rigid triaxial ellipsoids in a two-body system can rotate chaotic...
The second and final step in the development of first-order secular solutions to rotational motions ...
A theoretical study was made of the angular motions of spinning bodies in space. The analysis was ba...
A semi-analytical model of the Yarkovsky–O’Keefe–Radzievskii–Paddack (YORP) effect on an asteroid sp...
International audienceContext. Seasonal variations and climate stability of a planet are very sensit...
We study the dynamics of two homogeneous rigid ellipsoids subject to their mutual gravitational infl...
A way is described to find the initial conditions for the simplest three-dimensional periodic motio...