论文标题
磁场与涡流管的相互作用在太阳下范围
Interaction of magnetic fields with a vortex tube at solar subgranular scale
论文作者
论文摘要
使用瑞典1 M太阳能望远镜记录的高分辨率光谱数据,我们已经确定了几个颗粒泳道的实例。这些被认为是涡流流的基础管的观察性特征,其轴为平行于太阳表面的轴向。与这些水平涡流管相关联,在某些情况下,我们检测到位于颗粒道的尾部暗边缘的线性极化中的显着信号。线性极化出现在颗粒车道发育的后期,侧面是圆形极化的斑块。 Stokes反转表明,线性极化信号的细长斑块来自与颗粒车道对齐的水平磁场。我们分析了磁流失动力数值模拟的快照,并找到了颗粒车道的水平涡流管重新分布,并将磁场传输到太阳表面,从而导致偏振标志,从而导致类似于观察到的偏振符号。因此,我们目睹了能够将磁通传输到颗粒内太阳表面的机制。这种机制可能是据称在太阳表面作用并产生安静的磁场的小型发电机的重要组成部分。
Using high-resolution spectropolarimetric data recorded with the Swedish 1 m Solar Telescope, we have identified several instances of granular lanes traveling into granules. These are believed to be the observational signature of underlying tubes of vortical flow with their axis oriented parallel to the solar surface. Associated with these horizontal vortex tubes, we detect in some cases a significant signal in linear polarization, located at the trailing dark edge of the granular lane. The linear polarization appears at a later stage of the granular lane development, and is flanked by patches of circular polarization. Stokes inversions show that the elongated patch of linear polarization signal arises from the horizontal magnetic field aligned with the granular lane. We analyze snapshots of a magnetohydrodynamic numerical simulation and find cases in which the horizontal vortex tube of the granular lane redistributes and transports the magnetic field to the solar surface causing a polarimetric signature similar to what is observed. We thus witness a mechanism capable of transporting magnetic flux to the solar surface within granules. This mechanism is probably an important component of the small-scale dynamo supposedly acting at the solar surface and generating the quiet-Sun magnetic field.