Rotating stellar convection transports angular momentum towards the equator, generating the characteristic equatorial acceleration of the solar rotation while the radial flux of angular momentum is always inwards. New numerical box simulations for the meridional cross-correlation (uθuφ), however, reveal the angular momentum transport towards the poles for slow rotation and towards the equator for fast rotation. The explanation is that for slow rotation a negative radial gradient of the angular velocity always appears, which in combination with a so-far neglected rotation-induced off-diagonal eddy viscosity term ν⊥ provides "antisolar rotation" laws with a decelerated equator. Similarly, the simulations provided positive values for the rotat...
Context. Over the course of their lifetimes, the rotation of solar-type stars goes through different...
In order to explain the variance of the solar rotation law during the activity minima and maxima, th...
International audienceContext. Over the course of their lifetimes, the rotation of solar-type stars ...
Rotating stellar convection transports angular momentum towards the equator, generating the characte...
VK: resolve; Karhunen, J.; ReSoLVEContext. Solar-like differential rotation is characterized by a ra...
A general picture of differential rotation in cool stars is that they are 'solar-like', with the equ...
Context. Solar-like differential rotation is characterized by a rapidly rotating equator and slower ...
VK: Karhunen, J.; ReSoLVEContext. Late-type stars rotate differentially owing to anisotropic turbule...
(abridged) Context: Late-type stars such as the Sun rotate differentially due to the interaction of ...
Context. Late-type stars such as the Sun rotate differentially due to the interaction of turbulent c...
5 pages, 6 figuresInternational audienceStellar differential rotation can be separated into two main...
We analyze the simulation result shown in Hotta & Kusano, 2021 in which the solar-like differential ...
Context. Late-type stars rotate differentially owing to anisotropic turbulence in their outer convec...
| openaire: EC/H2020/818665/EU//UniSDynContext. For moderate and slow rotation, the magnetic activit...
Context. Over the course of their lifetimes, the rotation of solar-type stars goes through different...
In order to explain the variance of the solar rotation law during the activity minima and maxima, th...
International audienceContext. Over the course of their lifetimes, the rotation of solar-type stars ...
Rotating stellar convection transports angular momentum towards the equator, generating the characte...
VK: resolve; Karhunen, J.; ReSoLVEContext. Solar-like differential rotation is characterized by a ra...
A general picture of differential rotation in cool stars is that they are 'solar-like', with the equ...
Context. Solar-like differential rotation is characterized by a rapidly rotating equator and slower ...
VK: Karhunen, J.; ReSoLVEContext. Late-type stars rotate differentially owing to anisotropic turbule...
(abridged) Context: Late-type stars such as the Sun rotate differentially due to the interaction of ...
Context. Late-type stars such as the Sun rotate differentially due to the interaction of turbulent c...
5 pages, 6 figuresInternational audienceStellar differential rotation can be separated into two main...
We analyze the simulation result shown in Hotta & Kusano, 2021 in which the solar-like differential ...
Context. Late-type stars rotate differentially owing to anisotropic turbulence in their outer convec...
| openaire: EC/H2020/818665/EU//UniSDynContext. For moderate and slow rotation, the magnetic activit...
Context. Over the course of their lifetimes, the rotation of solar-type stars goes through different...
In order to explain the variance of the solar rotation law during the activity minima and maxima, th...
International audienceContext. Over the course of their lifetimes, the rotation of solar-type stars ...