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首页> 外文期刊>The Astrophysical journal >EVOLUTION OF THE MAGNETIC FIELD INCLINATION IN A FORMING PENUMBRA
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EVOLUTION OF THE MAGNETIC FIELD INCLINATION IN A FORMING PENUMBRA

机译:成形半球中磁场倾角的演变

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摘要

We describe the evolution of the magnetic and velocity fields in the annular zone around a pore a few hours before the formation of its penumbra. We detected the presence of several patches at the edge of the annular zone, with a typical size of about 1''. These patches are characterized by a rather vertical magnetic field with polarity opposite to that of the pore. They correspond to regions of plasma upflow up to 2.5?km?s–1 and are characterized by radially outward displacements with horizontal velocities up to 2?km?s–1. We interpret these features as portions of the pore magnetic field lines returning beneath the photosphere being progressively stretched and pushed down by the overlying magnetic fields. Our results confirm that the penumbra formation results from changes in the inclination of the field lines in the magnetic canopy overlying the pore, until they reach the photosphere.
机译:我们描述了在其半影形成前几个小时,围绕孔的环形区域中的磁场和速度场的演变。我们在环形区域的边缘检测到了一些斑块,典型大小约为1''。这些贴片的特征在于相当垂直的磁场,其极性与孔的极性相反。它们对应于高达2.5?km?s-1的等离子上流区域,并具有水平速度高达2?km?s-1的径向向外位移的特征。我们将这些特征解释为返回到光球下面的孔隙磁场线的一部分被覆盖的磁场逐渐拉伸并向下推。我们的结果证实,半影的形成是由于覆盖在孔隙上的磁冠层中的磁力线的倾斜度变化所致,直到它们到达光球为止。

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