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Evolution of twist-shear and dip-shear in flaring active region NOAA 10930

机译:喇叭形活动区NOAA 10930中扭剪和浸剪的演化

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We study the evolution of magnetic shear angle in a flare productive active region NOAA 10930. The magnetic shear angle is defined as the deviation in the orientation of the observed magnetic field vector with respect to the potential field vector. The shear angle is measured in horizontal as well as vertical plane. The former is computed by taking the difference between the azimuth angles of the observed and potential field and is called the twist-shear, while the latter is computed by taking the difference between the inclination angles of the observed and potential field and is called the dip-shear. The evolution of the two shear angles is then tracked over a small region located over the sheared penumbra of the delta sunspot in NOAA 10930. We find that, while the twist-shear shows an increasing trend after the flare the dip-shear shows a significant drop after the flare.
机译:我们研究了火光生产有源区NOAA 10930中的磁剪切角的演变。磁剪切角被定义为观察到的磁场矢量相对于潜在场向量的偏差。剪切角在水平和垂直平面中测量。通过取代观察和潜在场的方位角之间的差异来计算前者,并且被称为扭转剪切,而后者是通过在观察到的和潜在场的倾斜角之间的差异而被称为倾角 - 心。然后在位于NOAA 10930的Delta Sunspot的剪切半影上的小区域跟踪两种剪切角度的演变。我们发现,虽然跳过跳过剪切显示出显着的扭曲剪切显示出越来越大的趋势耀斑后掉落。

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