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V Urpin

Publications and source records attributed to V Urpin.

2 recordsLinked to original sources

Hydromagnetic instability in differentially rotating flows.

We study the stability of compressible differentially rotating flows in the presence of the magnetic field, and we show that the compressibility profoundly alters the previous results for a magnetized incompressible flow. The necessary condition of newly found instability can be easily satisfied in various flows in laboratory and astrophysical conditions and reads BsBphiOmega' not equal to 0, where Bs and Bphi are the radial and azimuthal components of the magnetic field, Omega' = d Omega/ds with s being the cylindrical radius. Contrary to the well-known magnetorotational instability that occurs only if omega decreases with s, the instability considered in this paper may occur at any sign of Omega'. The instability can operate even in a very strong magnetic field that entirely suppresses the standard magnetorotational instability. The growth time of instability can be as short as a few rotation periods.

Journal Article↗

Mean electromotive force in turbulent shear flow.

We consider the mean electromotive force in turbulent shear flow taking into account the stretching of turbulent magnetic field lines by the mean flow. The mean flow can change the properties of magnetohydrodynamics-turbulence in such a way that turbulent motions become suitable for the dynamo action. The contribution of shear to the mean electromotive force cannot be described in terms of the alpha effect. The instability of the mean field arises if shear is sufficiently strong. The growth rate of instability depends on the length scale of the mean field being higher for the field with a smaller length scale. The considered mechanism may be responsible for the generation of large-scale magnetic fields in various astrophysical bodies (galaxies, accretion discs, jets, etc.).

Journal Article↗