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New mechanism of generation of large-scale magnetic field in a sheared turbulent plasma

机译:在剪切湍流等离子体中产生大磁场的新机理

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A review of recent studies on a new mechanism of generation of large-scale magnetic field in a sheared turbulent plasma is presented. This mechanism is associated with the shear-current effect which is related to the W x J-term in the mean electromotive force. This effect causes the generation of the large-scale magnetic field even in a nonrotating and nonhelical homogeneous sheared turbulent convection whereby the a effect vanishes (where W is the mean vorticity due to the large-scale shear motions and J is the mean electric current). It is found that turbulent convection promotes the shear-current dynamo instability, i.e., the heat flux causes positive contribution to the shear-current effect. However, there is no dynamo action due to the shear-current effect for small hydrodynamic and magnetic Reynolds numbers even in a turbulent convection, if the spatial scaling for the turbulent correlation time is τ(k) ∝ k~(-2), where k is the small-scale wave number. We discuss here also the nonlinear mean-field dynamo due to the shear-current effect and take into account the transport of magnetic helicity as a dynamical nonlinearity. The magnetic helicity flux strongly affects the magnetic field dynamics in the nonlinear stage of the dynamo action. When the magnetic helicity flux is not small, the saturated level of the mean magnetic field is of the order of the equipartition field determined by the turbulent kinetic energy. The obtained results are important for elucidation of origin of the large-scale magnetic fields in astrophysical and cosmic sheared turbulent plasma.
机译:提出了在剪切湍流等离子体中产生大范围磁场的新机制的最新研究综述。该机制与剪切电流效应有关,该剪切电流效应与平均电动势中的W x J项有关。即使在非旋转且非螺旋均质的剪切湍流中,该效应也会产生大范围的磁场,从而使该效应消失(其中W是由于大范围剪切运动引起的平均涡度,而J是平均电流) 。发现湍流对流促进了剪切电流发电机的不稳定性,即热通量对剪切电流效应产生了积极的贡献。但是,如果湍流相关时间的空间比例为τ(k)∝ k〜(-2),则即使在湍流对流中,对于较小的水动力和磁雷诺数,由于剪切电流效应也没有发电机作用。 k是小波数。在这里,我们还将讨论由于剪切电流效应而产生的非线性平均场发电机,并将磁螺旋的传输作为动态非线性考虑在内。磁螺旋通量在发电机动作的非线性阶段强烈影响磁场动力学。当磁螺旋通量不小时,平均磁场的饱和水平约为由湍动能确定的等分场。获得的结果对于阐明天体和宇宙剪切湍流等离子体中的大型磁场的起源很重要。

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