International audienceAt the heart of today’s solar magnetic field evolution models lies the alpha dynamo description. In this work, we investigate the fate of alpha dynamos as the magnetic Reynolds number Rm is increased. Using Floquet theory, we are able to precisely quantify mean-field effects like the alpha and beta effect (i) by rigorously distinguishing dynamo modes that involve large-scale components from the ones that only involve small scales, and by (ii) providing a way to investigate arbitrary large-scale separations with minimal computational cost. We apply this framework to helical and nonhelical flows as well as to random flows with short correlation time. Our results determine that the alpha description is valid for Rm smalle...
. There is a class of dynamos where the field is caused by a velocity field which, in turn, is drive...
The solar magnetic field displays features on a wide range of length-scales including spatial and te...
A complete understanding of the physical mechanisms responsible for the solar magnetic field is yet ...
The current understanding of astrophysical magnetic fields is reviewed, focusing on their generation...
Astrophysical dynamos are at the heart of cosmic magnetic fields of a wide range of scales, from pla...
We use the formalism of Pouquet, Frisch and L\'eorat (hereafter PFL, 1976) to investigate time depen...
One of the extraordinary properties of the Sun is the observed range of motion scales from the conve...
Nonlinear mean-field models of the solar dynamo show long-term variability, which may be relevant to...
The generation of magnetic fields in space plasmas and in astrophysics is usually described within t...
The Sun’s magnetic field exhibits coherence in space and time on much larger scales than the turbul...
We explore the growth of large-scale magnetic fields in a shear flow, due to helicity fluctuations w...
There is mounting evidence that the ejection of magnetic helicity from the solar surface is importan...
The Sun's magnetic field exhibits coherence in space and time on much larger scales than the turbule...
We explore the growth of large-scale magnetic fields in a shear flow, due to helicity fluctuations w...
The standard theory of the solar cycle in terms of an alpha-Omega dynamo hinges on a proper understa...
. There is a class of dynamos where the field is caused by a velocity field which, in turn, is drive...
The solar magnetic field displays features on a wide range of length-scales including spatial and te...
A complete understanding of the physical mechanisms responsible for the solar magnetic field is yet ...
The current understanding of astrophysical magnetic fields is reviewed, focusing on their generation...
Astrophysical dynamos are at the heart of cosmic magnetic fields of a wide range of scales, from pla...
We use the formalism of Pouquet, Frisch and L\'eorat (hereafter PFL, 1976) to investigate time depen...
One of the extraordinary properties of the Sun is the observed range of motion scales from the conve...
Nonlinear mean-field models of the solar dynamo show long-term variability, which may be relevant to...
The generation of magnetic fields in space plasmas and in astrophysics is usually described within t...
The Sun’s magnetic field exhibits coherence in space and time on much larger scales than the turbul...
We explore the growth of large-scale magnetic fields in a shear flow, due to helicity fluctuations w...
There is mounting evidence that the ejection of magnetic helicity from the solar surface is importan...
The Sun's magnetic field exhibits coherence in space and time on much larger scales than the turbule...
We explore the growth of large-scale magnetic fields in a shear flow, due to helicity fluctuations w...
The standard theory of the solar cycle in terms of an alpha-Omega dynamo hinges on a proper understa...
. There is a class of dynamos where the field is caused by a velocity field which, in turn, is drive...
The solar magnetic field displays features on a wide range of length-scales including spatial and te...
A complete understanding of the physical mechanisms responsible for the solar magnetic field is yet ...