Context. Internal gravity waves (hereafter IGWs) are studied for their impact on the angular momentum transport in stellar radiation zones and the information they provide about the structure and dynamics of deep stellar interiors. We present the first 3D nonlinear numerical simulations of IGWs excitation and propagation in a solar-like star. Aims. The aim is to study the behavior of waves in a realistic 3D nonlinear time-dependent model of the Sun and to characterize their properties. Methods. We compare our results with theoretical and 1D predictions. It allows us to point out the complementarity between theory and simulation and to highlight the convenience, but also the limits, of the asymptotic and linear theories. Results. We show tha...
Stars that are over 1.6 solar masses are generally known to possess convective cores and radiative e...
International audienceRecent photometric observations of massive stars show ubiquitous low-frequency...
International audienceArtificially increasing the luminosity and the thermal diffusivity of a model ...
Context. Internal gravity waves (IGWs) are studied for their impact on the angular momentum transpor...
International audienceContext: Internal gravity waves (hereafter IGWs) are studied for their impact ...
Context. The revolution of helio- and asteroseismology provides access to the detailed properties of...
International audienceContext. The revolution of helio- and asteroseismology provides access to the ...
The importance of waves propagating in the stars is twofold. First, they offer a great opportunity t...
Nearly everywhere in the Hertzsprung-Russell diagram, internal gravity waves (IGW) are of primary im...
International audienceWe briefly present our recent progress to model in 3-D the excitation and prop...
Context. There are no strong constraints placed thus far on the amplitude of internal gravity waves ...
Stars that are over 1.6 solar masses are generally known to possess convective cores and radiative e...
International audienceRecent photometric observations of massive stars show ubiquitous low-frequency...
International audienceArtificially increasing the luminosity and the thermal diffusivity of a model ...
Context. Internal gravity waves (IGWs) are studied for their impact on the angular momentum transpor...
International audienceContext: Internal gravity waves (hereafter IGWs) are studied for their impact ...
Context. The revolution of helio- and asteroseismology provides access to the detailed properties of...
International audienceContext. The revolution of helio- and asteroseismology provides access to the ...
The importance of waves propagating in the stars is twofold. First, they offer a great opportunity t...
Nearly everywhere in the Hertzsprung-Russell diagram, internal gravity waves (IGW) are of primary im...
International audienceWe briefly present our recent progress to model in 3-D the excitation and prop...
Context. There are no strong constraints placed thus far on the amplitude of internal gravity waves ...
Stars that are over 1.6 solar masses are generally known to possess convective cores and radiative e...
International audienceRecent photometric observations of massive stars show ubiquitous low-frequency...
International audienceArtificially increasing the luminosity and the thermal diffusivity of a model ...