Context. Turbulent transport of chemical elements in radiative zones of stars is considered in current stellar evolution codes thanks to phenomenologically derived diffusion coefficients. Recent local numerical simulations suggest that the coefficient for radial turbulent diffusion due to radial differential rotation satisfies Dt ≃ 0.058κ/Ri, in qualitative agreement with the model of Zahn (1992, A&A, 265, 115). However, this model does not apply (i) when differential rotation is strong with respect to stable thermal stratification or (ii) when chemical stratification has a significant dynamical effect, a situation encountered at the outer boundary of nuclear-burning convective cores. Aims. We extend our numerical study to consider ...
International audienceShear-induced turbulence could play a significant role in mixing momentum and ...
Although it presently includes convective overshoot, microscopic diffusion, gravitational settling a...
Context. Chemical composition is an important factor that affects stellar evolution. The element abu...
Context. Turbulent transport of chemical elements in radiative zones of stars is considered in curre...
One of the key issues of stellar evolution theory is the influence of the transport processes relate...
Context. In stellar interiors, rotation is able to drive turbulent motions, and the relate...
Context. In stellar interiors, rotation is able to drive turbulent motions, and the related transpor...
Context. Recent numerical simulations suggest that the model by Zahn (1992, A&A, 265, 115) for the t...
One of the key issues of stellar evolution theory is the influence of transport processes related to...
Jean-Paul Zahn’s formalism for vertical shear mixing is used in several stellar evolution codes, but...
International audienceBeing able to account for the missing mixing in stellar radiative zones is a k...
International audienceThis work presents numerical results on the transport of heat and chemical spe...
The purpose of this paper is to improve the modelization of the rotational mixing which occurs in st...
International audienceThe purpose of this paper is to improve the modelization of the rotational mix...
International audienceContext. Turbulent transport in stellar radiative zones is a key ingredient of...
International audienceShear-induced turbulence could play a significant role in mixing momentum and ...
Although it presently includes convective overshoot, microscopic diffusion, gravitational settling a...
Context. Chemical composition is an important factor that affects stellar evolution. The element abu...
Context. Turbulent transport of chemical elements in radiative zones of stars is considered in curre...
One of the key issues of stellar evolution theory is the influence of the transport processes relate...
Context. In stellar interiors, rotation is able to drive turbulent motions, and the relate...
Context. In stellar interiors, rotation is able to drive turbulent motions, and the related transpor...
Context. Recent numerical simulations suggest that the model by Zahn (1992, A&A, 265, 115) for the t...
One of the key issues of stellar evolution theory is the influence of transport processes related to...
Jean-Paul Zahn’s formalism for vertical shear mixing is used in several stellar evolution codes, but...
International audienceBeing able to account for the missing mixing in stellar radiative zones is a k...
International audienceThis work presents numerical results on the transport of heat and chemical spe...
The purpose of this paper is to improve the modelization of the rotational mixing which occurs in st...
International audienceThe purpose of this paper is to improve the modelization of the rotational mix...
International audienceContext. Turbulent transport in stellar radiative zones is a key ingredient of...
International audienceShear-induced turbulence could play a significant role in mixing momentum and ...
Although it presently includes convective overshoot, microscopic diffusion, gravitational settling a...
Context. Chemical composition is an important factor that affects stellar evolution. The element abu...