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首页> 外文期刊>Astronomy and astrophysics >Steady state reconnection at a single 3D magnetic null point
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Steady state reconnection at a single 3D magnetic null point

机译:在单个3D磁性零点处进行稳态重新连接

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摘要

Aims. We systematically stress a rotationally symmetric 3D magnetic null point by advecting the opposite footpoints of the spine axis in opposite directions. This stress eventually concentrates in the vicinity of the null point, thereby forming a local current sheet through which magnetic reconnection takes place. The aim is to look for a steady state evolution of the current sheet dynamics, which may provide scaling relations for various characteristic parameters of the system. Methods. The evolution is followed by solving numerically the non-ideal MHD equations in a Cartesian domain. The null point is embedded in an initially constant density and temperature plasma. Results. It is shown that a quasi-steady reconnection process can be set up at a 3D null by continuous shear driving. It appears that a true steady state is unlikely to be realised because the current layer tends to grow until it is restricted by the geometry of the computational domain and the imposed driving profile. However, ratios between characteristic quantities clearly settle after some time to stable values, so that the evolution is quasi-steady. The experiments show a number of scaling relations, but they do not provide a clear consensus for extending to lower magnetic resistivity or faster driving velocities. More investigations are needed to fully clarify the properties of current sheets at magnetic null points.
机译:目的我们通过沿相反方向平移脊柱轴的相反脚点,系统地强调旋转对称3D磁性零点。该应力最终集中在零点附近,从而形成局部电流板,通过该局部电流板进行磁连接。目的是寻找当前工作表动力学的稳态演变,这可以为系统的各种特征参数提供比例关系。方法。演化之后是在笛卡尔域中对非理想的MHD方程进行数值求解。零点嵌入最初恒定的密度和温度的等离子体中。结果。结果表明,可以通过连续剪切驱动将准稳态重新连接过程设置为3D空值。似乎不可能实现真正的稳定状态,因为当前层趋于增长,直到受计算域的几何形状和施加的行驶轮廓限制。但是,一段时间后,特征量之间的比率显然会稳定在稳定值上,因此演变是准稳定的。实验显示了许多比例关系,但是它们并没有为扩展到较低的磁阻或更快的驱动速度提供明确的共识。需要进行更多的研究,以完全弄清电流薄层在零磁性点的特性。

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