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The influence of helical background fields on current helicity and electromotive force of magnetoconvection

机译:螺旋本底场对磁对流电流螺旋度和电动势的影响

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摘要

Motivated by the empirical finding that the known hemispheric rules for the current helicity at the solar surface are not strict, we demonstrate the excitation of small-scale current helicity by the influence of large-scale helical magnetic background fields on nonrotating magnetoconvection. This is shown within a quasilinear analytic theory of driven turbulence and by nonlinear simulations of magnetoconvection that the resulting small-scale current helicity has the same sign as the large-scale current helicity, while the ratio of both pseudoscalars is of the order of the magnetic Reynolds number of the convection. The same models do not provide finite values of the small-scale kinetic helicity. On the other hand, a turbulence-induced electromotive force is produced including the diamagnetic pumping term, as well as the eddy diffusivity but, however, no α effect. It has thus been argued that the relations for the simultaneous existence of small-scale current helicity and α effect do not hold for the model of nonrotating magnetoconvection under consideration. Calculations for various values of the magnetic Prandtl number demonstrate that, for the considered diffusivities, the current helicity increases for growing magnetic Reynolds number, which is not true for the velocity of the diamagnetic pumping, which is in agreement with the results of the quasilinear analytical approximation.
机译:基于经验发现,已知太阳表面电流螺旋度的半球规则并不严格,我们证明了大规模螺旋磁场背景场对非旋转磁对流的影响,激发了小规模电流螺旋度。这在驱动湍流的拟线性分析理论中以及磁对流的非线性模拟中得到了证明,即所产生的小规模电流螺旋度与大尺度电流螺旋度具有相同的符号,而两个拟标量的比值是磁阶的对流的雷诺数。相同的模型没有提供小规模动力学螺旋的有限值。另一方面,产生了包括反磁性泵浦项以及涡流扩散率的湍流感应电动势,但是没有α效应。因此认为,在考虑中的非旋转磁对流模型中,小电流螺旋和α效应同时存在的关系不成立。对各种磁普朗特数值的计算表明,对于所考虑的扩散率,随着磁雷诺数的增加,电流螺旋度增加,这对反磁抽运的速度并不正确,这与准线性分析的结果一致近似。

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