International audienceWe numerically investigate the efficiency of a spherical Couette flow at generating a self-sustained magnetic field. No dynamo action occurs for axisymmetric flow while we always found a dynamo when non-axisymmetric hydrodynamical instabilities are excited. Without rotation of the outer sphere, typical critical magnetic Reynolds numbers $Rm_c$ are of the order of a few thousands. They increase as the mechanical forcing imposed by the inner core on the flow increases (Reynolds number $Re$). Namely, no dynamo is found if the magnetic Prandtl number $Pm=Rm/Re$ is less than a critical value $Pm_c\sim 1$. Oscillating quadrupolar dynamos are present in the vicinity of the dynamo onset. Saturated magnetic fields obtained in s...
The magnetic field in rapidly rotating dynamos is spatially inhomogeneous. The axial variation of th...
We have performed numerical simulations of boundary-driven dynamos using a three-dimensional nonline...
The magnetic fields of planets and stars are thought to play an important role in the fluid motions ...
International audienceWe numerically investigate the efficiency of a spherical Couette flow at gener...
We numerically investigate the efficiency of a spherical Couette flow at generating a self-sustained...
International audienceWe investigate dynamo action in three-dimensional numerical simulations of tur...
International audienceWe present a scenario for magnetic field amplification where an electrically c...
International audienceWe perform 3D numerical simulations of dynamos in a Couette flow generated by ...
A sphere containing electrically conducting fluid can generate a magnetic field by dynamo action, pr...
International audienceWe study numerically an extensive set of dynamo models in rotating spherical s...
We have performed numerical simulations of boundary-driven dynamos using a three-dimensional non-lin...
23 pagesInternational audienceSeveral teams have reported peculiar frequency spectra for flows in a ...
The geometry of the liquid region of a planetary core can effect core convection and magnetic field ...
Aims. To study the existence of large-scale convective dynamos under the influence of shear and rota...
Abstract. Numerical calculations of fluid dynamos powered by thermal convection in a rotating, elect...
The magnetic field in rapidly rotating dynamos is spatially inhomogeneous. The axial variation of th...
We have performed numerical simulations of boundary-driven dynamos using a three-dimensional nonline...
The magnetic fields of planets and stars are thought to play an important role in the fluid motions ...
International audienceWe numerically investigate the efficiency of a spherical Couette flow at gener...
We numerically investigate the efficiency of a spherical Couette flow at generating a self-sustained...
International audienceWe investigate dynamo action in three-dimensional numerical simulations of tur...
International audienceWe present a scenario for magnetic field amplification where an electrically c...
International audienceWe perform 3D numerical simulations of dynamos in a Couette flow generated by ...
A sphere containing electrically conducting fluid can generate a magnetic field by dynamo action, pr...
International audienceWe study numerically an extensive set of dynamo models in rotating spherical s...
We have performed numerical simulations of boundary-driven dynamos using a three-dimensional non-lin...
23 pagesInternational audienceSeveral teams have reported peculiar frequency spectra for flows in a ...
The geometry of the liquid region of a planetary core can effect core convection and magnetic field ...
Aims. To study the existence of large-scale convective dynamos under the influence of shear and rota...
Abstract. Numerical calculations of fluid dynamos powered by thermal convection in a rotating, elect...
The magnetic field in rapidly rotating dynamos is spatially inhomogeneous. The axial variation of th...
We have performed numerical simulations of boundary-driven dynamos using a three-dimensional nonline...
The magnetic fields of planets and stars are thought to play an important role in the fluid motions ...