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Observation of a reversal of rotation in a sunspot during a solar flare

机译:太阳耀斑期间太阳黑子旋转反转的观察

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The abrupt motion of the photospheric flux during a solar flare is thought to be a back reaction caused by the coronal field reconfiguration. However, the type of motion pattern and the physical mechanism responsible for the back reaction has been uncertain. Here we show that the direction of a sunspot’s rotation is reversed during an X1.6 flare using observations from the Helioseismic and Magnetic Imager. A magnetic field extrapolation model shows that the corresponding coronal magnetic field shrinks with increasing magnetic twist density. This suggests that the abrupt reversal of rotation in the sunspot may be driven by a Lorentz torque that is produced by the gradient of twist density from the solar corona to the solar interior. These results support the view that the abrupt reversal in the rotation of the sunspot is a dynamic process responding to shrinkage of the coronal magnetic field during the flare.
机译:太阳耀斑期间光球通量的突然运动被认为是由日冕场重构引起的逆反应。但是,运动模式的类型和引起反作用的物理机制尚不确定。在这里,我们利用Helioseismic and Magnetic Imager的观测结果表明,在X1.6耀斑中黑子的旋转方向是反向的。磁场外推模型表明,相应的日冕磁场随着磁扭曲密度的增加而缩小。这表明黑子中突然的旋转反转可能是由从太阳日冕到太阳内部的扭曲密度梯度产生的洛伦兹转矩所驱动的。这些结果支持这样一种观点,即黑子旋转的突然逆转是响应耀斑期间日冕磁场收缩的动态过程。

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