论文标题

太阳对流区的湍流磁性螺旋通量

Turbulent magnetic helicity fluxes in solar convective zone

论文作者

Kleeorin, N., Rogachevskii, I.

论文摘要

等离子体($α$效应)和非均匀(差速器)旋转的螺旋运动的联合作用是太阳和银河大规模磁场的关键发电机机制。小规模场的磁螺旋力动力学是非线性发电机饱和度中的至关重要机制,其中湍流磁性螺旋通量允许避免$α$效应的灾难性淬火。太阳和太阳能恒星以及银河盘的对流区是产生湍流磁性螺旋通量的来源。在平均场进近和光谱$τ$近似的框架中,我们使用库仑量表在密度分层的湍流中得出了湍流的磁性通量。湍流磁性螺旋通量包括非梯度和梯度贡献。非梯度磁性螺旋度通量与非线性有效速度成正比(在没有密度分层的情况下消失)乘以小规模的磁性螺旋度,而梯度贡献描述了小规模磁性螺旋的湍流磁扩散。此外,湍流的磁性螺旋通量包含与动力学$α$效应或其梯度成正比的源项,以及由大规模剪切(太阳差旋转)引起的贡献。我们已经证明,由于动力学$α$效应而引起的湍流磁性螺旋通量及其径向衍生物与小规模磁性螺旋的非线性磁扩散结合在太阳对流区中是主导的。

Combined action of helical motions of plasma (the $α$ effect) and non-uniform (differential) rotation is a key dynamo mechanism of solar and galactic large-scale magnetic fields. Dynamics of magnetic helicity of small-scale fields is a crucial mechanism in a nonlinear dynamo saturation where turbulent magnetic helicity fluxes allow to avoid catastrophic quenching of the $α$ effect. The convective zone of the Sun and solar-like stars as well as galactic discs are the source for production of turbulent magnetic helicity fluxes. In the framework of the mean-field approach and the spectral $τ$ approximation, we derive turbulent magnetic helicity fluxes using the Coulomb gauge in a density-stratified turbulence. The turbulent magnetic helicity fluxes include non-gradient and gradient contributions. The non-gradient magnetic helicity flux is proportional to a nonlinear effective velocity (which vanishes in the absence of the density stratification) multiplied by small-scale magnetic helicity, while the gradient contributions describe turbulent magnetic diffusion of the small-scale magnetic helicity. In addition, the turbulent magnetic helicity fluxes contain source terms proportional to the kinetic $α$ effect or its gradients, and also contributions caused by the large-scale shear (solar differential rotation). We have demonstrated that the turbulent magnetic helicity fluxes due to the kinetic $α$ effect and its radial derivative in combination with the nonlinear magnetic diffusion of the small-scale magnetic helicity are dominant in the solar convective zone.

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