| openaire: EC/H2020/818665/EU//UniSDynContext. For moderate and slow rotation, the magnetic activity of solar-like stars is observed to strongly depend on rotation, while for rapid rotation, only a very weak or no dependency is detected. These observations do not yet have a solid explanation in terms of dynamo theory. Aims. We aim to find such an explanation by numerically investigating the rotational dependency of dynamo drivers in solar-like stars, that is, stars that have a convective envelope of similar thickness to that of the Sun. Methods. We ran semi-global convection simulations of stars with rotation rates from 0 to 30 times the solar value, corresponding to Coriolis numbers, Co, of 0 to 110. We measured the turbulent transport co...
International audienceYoung solar-type stars rotate rapidly and many are magnetically active. Some a...
International audienceYoung solar-type stars rotate rapidly and many are magnetically active. Some a...
International audienceYoung solar-type stars rotate rapidly and many are magnetically active. Some a...
| openaire: EC/H2020/818665/EU//UniSDynContext. For moderate and slow rotation, the magnetic activit...
| openaire: EC/H2020/818665/EU//UniSDynContext. For moderate and slow rotation, the magnetic activit...
Context. For moderate and slow rotation, the magnetic activity of solar-like stars is observed to st...
Context. For moderate and slow rotation, the magnetic activity of solar-like stars is observed to st...
Context. Several solar-like stars exhibit cyclic magnetic activity similar to the Sun as found in ph...
Context. Several solar-like stars exhibit cyclic magnetic activity similar to the Sun as found in ph...
Context. Several solar-like stars exhibit cyclic magnetic activity similar to the Sun as found in ph...
Aims. We investigate dynamo action in global compressible solar-like convective dynamos in the frame...
In a rigidly-rotating magnetohydrodynamic (MHD) system with convective turbulence, a large-scale dyn...
VK: Karhunen, J.; ReSoLVEContext. Late-type stars rotate differentially owing to anisotropic turbule...
VK: Karhunen, J.; ReSoLVEContext. Late-type stars rotate differentially owing to anisotropic turbule...
Context. Late-type stars rotate differentially owing to anisotropic turbulence in their outer convec...
International audienceYoung solar-type stars rotate rapidly and many are magnetically active. Some a...
International audienceYoung solar-type stars rotate rapidly and many are magnetically active. Some a...
International audienceYoung solar-type stars rotate rapidly and many are magnetically active. Some a...
| openaire: EC/H2020/818665/EU//UniSDynContext. For moderate and slow rotation, the magnetic activit...
| openaire: EC/H2020/818665/EU//UniSDynContext. For moderate and slow rotation, the magnetic activit...
Context. For moderate and slow rotation, the magnetic activity of solar-like stars is observed to st...
Context. For moderate and slow rotation, the magnetic activity of solar-like stars is observed to st...
Context. Several solar-like stars exhibit cyclic magnetic activity similar to the Sun as found in ph...
Context. Several solar-like stars exhibit cyclic magnetic activity similar to the Sun as found in ph...
Context. Several solar-like stars exhibit cyclic magnetic activity similar to the Sun as found in ph...
Aims. We investigate dynamo action in global compressible solar-like convective dynamos in the frame...
In a rigidly-rotating magnetohydrodynamic (MHD) system with convective turbulence, a large-scale dyn...
VK: Karhunen, J.; ReSoLVEContext. Late-type stars rotate differentially owing to anisotropic turbule...
VK: Karhunen, J.; ReSoLVEContext. Late-type stars rotate differentially owing to anisotropic turbule...
Context. Late-type stars rotate differentially owing to anisotropic turbulence in their outer convec...
International audienceYoung solar-type stars rotate rapidly and many are magnetically active. Some a...
International audienceYoung solar-type stars rotate rapidly and many are magnetically active. Some a...
International audienceYoung solar-type stars rotate rapidly and many are magnetically active. Some a...