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Large-scale dynamo action driven by forced beating waves in a highly conducting plasma

机译:在高导电等离子体中强制跳动波驱动的大规模发电机动作

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The aim of this short paper is simply to demonstrate the effect of interactions between distinct waves induced by an oscillatory forcing on generation of the large-scale electromotive force (EMF) in a highly electrically conducting plasma in the dynamical regime, i.e. when the back reaction of the Lorentz force on the flow is included. The mean EMF is induced by waves with distinct but close phase speeds, which are called 'beating waves' by analogy with the acoustic effect of 'beat', in the presence of a locally uniform seed magnetic field. These waves may have either positive or negative helicity, and it is supposed that waves of a single sign of helicity are preferentially excited by a symmetry-breaking mechanism. The formula for the mean EMF in a highly conducting plasma is derived, conditions relevant to those of the early universe before and during galaxy formation. Within the scope of the weak magnetohydrodynamic turbulence dominated by the linear waves an alpha-effect, that is generation of the large-scale EMF is studied, which leads to amplification of the seed mean magnetic field. Possible subsequent equilibration due to quenching resulting from the presence of the Lorentz force is briefly discussed.
机译:本文的目的只是简单地证明在动力调节中的高电导等离子体中产生大型电动势(EMF)在产生大规模电动势(EMF)中产生的不同波之间的相互作用的效果,即后反应包括流程的洛伦兹力。平均EMF由波形引起的,具有不同但近相速度的波,其在存在局部均匀的种子磁场的情况下与“拍摄”的声学效果类似地称为“跳动波”。这些波可以具有正或负螺旋,并且假设通过对称破坏机构优先激发单个螺旋迹象的波。在高导电等离子体中的平均EMF的公式是推导出与星系形成之前和期间的早期宇宙的条件。在由线性波导地位的弱磁力流体动力学湍流的范围内,研究了α-效应,这是对大规模EMF的产生,这导致种子平均磁场的放大。简要讨论了由于Lorentz力的存在而导致的可能随后的平衡。

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