We consider rotating flows of an electrically conducting, viscous and resistive fluid in an external magnetic field with arbitrary combinations of axial and azimuthal components. Within the short-wavelength approximation, the local stability of the flow is studied with respect to perturbations of arbitrary azimuthal wavenumbers. In the limit of vanishing magnetic Prandtl number (Pm) we find that the maximum critical Rossby number (Ro) for the occurrence of the magnetorotational instability (MRI) is universally governed by the Liu limit which is below the value for Keplerian rotatio
Magnetorotational instability is considered to be one of the most powerful sources of turbulence in ...
The magnetorotational instability (MRI) can destabilize hydrodynamically stable rotational flows, th...
According to Rayleigh's criterion, rotating flows are linearly stable when their specific angular mo...
We perform a local stability analysis of rotational flows in the presence of a constant vertical mag...
The magnetorotational instability (MRI) plays a key role for cosmic structure formation by triggerin...
Local stability analysis is made of axisymmetric rotating flows of a perfectly conducting fluid and ...
Local stability analysis is made of axisymmetric rotating flows of a perfectly conducting fluid and ...
We study the magneto-rotational instability of an incompressible flow which rotates with angular vel...
We study the magneto-rotational instability of an incompressible flow which rotates with angular vel...
The magnetorotational instability (MRI) triggers turbulence and enables outward transport of angular...
Axisymmetric stability of viscous resistive magnetized Couette flow is re-examined, with the emphasi...
Using the Wentzel–Kramers–Brillouin (WKB) approximation we perform a linear stability analysis for a...
Magnetorotational instability (MRI) triggers turbulence and enables outward transport of angular mom...
We consider a differentially rotating flow of an incompressible electrically conducting and viscous ...
Key words instabilities – magnetohydrodynamics (MHD) – differential rotation We consider the flow o...
Magnetorotational instability is considered to be one of the most powerful sources of turbulence in ...
The magnetorotational instability (MRI) can destabilize hydrodynamically stable rotational flows, th...
According to Rayleigh's criterion, rotating flows are linearly stable when their specific angular mo...
We perform a local stability analysis of rotational flows in the presence of a constant vertical mag...
The magnetorotational instability (MRI) plays a key role for cosmic structure formation by triggerin...
Local stability analysis is made of axisymmetric rotating flows of a perfectly conducting fluid and ...
Local stability analysis is made of axisymmetric rotating flows of a perfectly conducting fluid and ...
We study the magneto-rotational instability of an incompressible flow which rotates with angular vel...
We study the magneto-rotational instability of an incompressible flow which rotates with angular vel...
The magnetorotational instability (MRI) triggers turbulence and enables outward transport of angular...
Axisymmetric stability of viscous resistive magnetized Couette flow is re-examined, with the emphasi...
Using the Wentzel–Kramers–Brillouin (WKB) approximation we perform a linear stability analysis for a...
Magnetorotational instability (MRI) triggers turbulence and enables outward transport of angular mom...
We consider a differentially rotating flow of an incompressible electrically conducting and viscous ...
Key words instabilities – magnetohydrodynamics (MHD) – differential rotation We consider the flow o...
Magnetorotational instability is considered to be one of the most powerful sources of turbulence in ...
The magnetorotational instability (MRI) can destabilize hydrodynamically stable rotational flows, th...
According to Rayleigh's criterion, rotating flows are linearly stable when their specific angular mo...