We calculate the tidal interaction of a uniformly rotating 1 ${M}_\odot$ star with an orbiting companion at various phases of core hydrogen burning from the ZAMS to core hydrogen exhaustion. By using the traditional approximation we reduce the solution of the non-adiabatic oscillation equations for the tidal forcing of a rotating star to a one dimensional problem by solving a separate eigenvalue problem for the angular dependence of the tidal perturbations. The radial oscillation equations are then solved by using finite differencing on a fine grid with an implicit matrix inversion method like for stellar evolution calculations. We are able to identify resonances with gravity and quasi-toroidal with up to $\simeq $1000 radial n...
Tidal interactions in close star-planet or binary star systems may excite inertial waves (their rest...
International audienceWe perform one of the first studies into the nonlinear evolution of tidally ex...
International audienceContext. Quantifying tidal interactions in close-in two-body systems is of pri...
We study the linear, but fully non-adiabatic tidal response of a uniformly rotating, somewhat evolve...
A general problem with the theory of stellar tides is that the observations indicate that the effect...
We calculate the dynamical tides raised on a non-rotating solar-type star by a close stellar or plan...
We study the fully non-adiabatic tidal response of a uniformly rotating unevolved 20 Msun star to th...
We study the tidal evolution of a binary system consisting of a 1.4 Msun compact object in elliptic ...
International audienceTidal dissipation in stars is one of the key physical mechanisms that drive th...
Context. Star-planet interactions must be taken into account in stellar models to understand the dyn...
International audienceContext. Star-planet interactions must be taken into account in stellar models...
We calculate the dynamical tides raised on a nonrotating solar-type star by a close stellar or plane...
I investigate tidal interactions and global oscillations in various types of stellar and planetary s...
We study the tidal evolution of eccentric binary systems consisting of a solar type main sequence s...
Since 1995, numerous close-in planets have been discovered around low-mass stars (M to A-type stars)...
Tidal interactions in close star-planet or binary star systems may excite inertial waves (their rest...
International audienceWe perform one of the first studies into the nonlinear evolution of tidally ex...
International audienceContext. Quantifying tidal interactions in close-in two-body systems is of pri...
We study the linear, but fully non-adiabatic tidal response of a uniformly rotating, somewhat evolve...
A general problem with the theory of stellar tides is that the observations indicate that the effect...
We calculate the dynamical tides raised on a non-rotating solar-type star by a close stellar or plan...
We study the fully non-adiabatic tidal response of a uniformly rotating unevolved 20 Msun star to th...
We study the tidal evolution of a binary system consisting of a 1.4 Msun compact object in elliptic ...
International audienceTidal dissipation in stars is one of the key physical mechanisms that drive th...
Context. Star-planet interactions must be taken into account in stellar models to understand the dyn...
International audienceContext. Star-planet interactions must be taken into account in stellar models...
We calculate the dynamical tides raised on a nonrotating solar-type star by a close stellar or plane...
I investigate tidal interactions and global oscillations in various types of stellar and planetary s...
We study the tidal evolution of eccentric binary systems consisting of a solar type main sequence s...
Since 1995, numerous close-in planets have been discovered around low-mass stars (M to A-type stars)...
Tidal interactions in close star-planet or binary star systems may excite inertial waves (their rest...
International audienceWe perform one of the first studies into the nonlinear evolution of tidally ex...
International audienceContext. Quantifying tidal interactions in close-in two-body systems is of pri...