The current understanding of astrophysical magnetic fields is reviewed, focusing on their generation and maintenance by turbulence. In the astrophysical context this generation is usually explained by a self-excited dynamo, which involves flows that can amplify a weak 'seed' magnetic field exponentially fast. Particular emphasis is placed on the nonlinear saturation of the dynamo. Analytic and numerical results are discussed both for small scale dynamos, which are completely isotropic, and for large scale dynamos, where some form of parity breaking is crucial. Central to the discussion of large scale dynamos is the so-called alpha effect which explains the generation of a mean field if the turbulence lacks mirror symmetry, i.e. if the flow ...
The generation of magnetic fields in space plasmas and in astrophysics is usually described within t...
It is shown that the ff effect of mean-field magnetohydrodynamics, which consists in the generation ...
The nonlinear mean-field dynamo due to a shear-current effect in a nonhelical homogeneous turbulence...
We first present basic results about advection, diffusion and amplification of a magnetic field by t...
The problem of origin and maintenance of cosmic magnetic fields is a longstanding one. In this thesi...
Key words magnetic fields – turbulence – MHD We discuss nonlinear mean-field galactic dynamo models ...
International audienceAt the heart of today’s solar magnetic field evolution models lies the alpha d...
We have extended our previous mean-field galactic dynamo model which included algebraic and dynamic ...
These lecture notes are based on a tutorial given in 2017 at a plasma physics winter school in Les H...
Astrophysical dynamos are at the heart of cosmic magnetic fields of a wide range of scales, from pla...
Dynamos are studied by astrophysical, planetary, and fusion communities but the differences between ...
The broad variety of ways in which magnetic helicity affects astrophysical systems, in particular dy...
These lecture notes are based on a tutorial given in 2017 at a plasma physics winter school in Les H...
. There is a class of dynamos where the field is caused by a velocity field which, in turn, is drive...
Exploring the origins and evolution of magnetic fields in planets, stars and galaxies, this book giv...
The generation of magnetic fields in space plasmas and in astrophysics is usually described within t...
It is shown that the ff effect of mean-field magnetohydrodynamics, which consists in the generation ...
The nonlinear mean-field dynamo due to a shear-current effect in a nonhelical homogeneous turbulence...
We first present basic results about advection, diffusion and amplification of a magnetic field by t...
The problem of origin and maintenance of cosmic magnetic fields is a longstanding one. In this thesi...
Key words magnetic fields – turbulence – MHD We discuss nonlinear mean-field galactic dynamo models ...
International audienceAt the heart of today’s solar magnetic field evolution models lies the alpha d...
We have extended our previous mean-field galactic dynamo model which included algebraic and dynamic ...
These lecture notes are based on a tutorial given in 2017 at a plasma physics winter school in Les H...
Astrophysical dynamos are at the heart of cosmic magnetic fields of a wide range of scales, from pla...
Dynamos are studied by astrophysical, planetary, and fusion communities but the differences between ...
The broad variety of ways in which magnetic helicity affects astrophysical systems, in particular dy...
These lecture notes are based on a tutorial given in 2017 at a plasma physics winter school in Les H...
. There is a class of dynamos where the field is caused by a velocity field which, in turn, is drive...
Exploring the origins and evolution of magnetic fields in planets, stars and galaxies, this book giv...
The generation of magnetic fields in space plasmas and in astrophysics is usually described within t...
It is shown that the ff effect of mean-field magnetohydrodynamics, which consists in the generation ...
The nonlinear mean-field dynamo due to a shear-current effect in a nonhelical homogeneous turbulence...