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Sunspot Rotations Derived from Magnetic and Velocity Fields Observations

机译:从磁场和速度场观测中得出的黑子旋转

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摘要

The rotation of sunspot penumbrae has been investigated on the longitudinal magnetic and velocity fields, observed in the photospheric line Fe i λ5253 Å of five lone sunspots. We reconstructed the entire vectors of both fields from their line-of-sight components. All three components of both vectors revealed that the rotation of the sunspots was, in fact, a torsional oscillation. All components of each sunspot had the same rotational period. The penumbrae oscillation periods were distributed in the range from 3.4 days to 7.7 days. The phase of the velocity azimuthal component oscillation was ahead of the phases of all other components of both vectors. If the penumbra plasma density had been equal to the photospheric plasma density (10−7 g cm−3) then the oscillation magnetic energy of the components exceeded their kinetic energy approximately by a factor of 10–200. The obtained results led to the conclusion that these oscillations were constrained.
机译:在五个孤立的太阳黑子的光球线Fe iλ5253Å中观察到,太阳黑子半影的旋转已在纵向磁场和速度场上进行了研究。我们从其视线成分中重建了这两个场的全部向量。两个向量的所有三个分量都表明,黑子的旋转实际上是扭转振荡。每个黑子的所有分量都有相同的旋转周期。半影振荡周期分布在3.4天至7.7天的范围内。速度方位角分量振荡的相位领先于两个矢量的所有其他分量的相位。如果半影等离子体密度等于光球等离子体密度(10−7 g cm−3 ),则组件的振荡磁能超过其动能约10-200倍。获得的结果得出这样的结论:这些振荡被约束。

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  • 来源
    《Solar Physics》 |2005年第2期|11-21|共11页
  • 作者

    S. I. Gopasyuk; O. S. Gopasyuk;

  • 作者单位

    Crimean Astrophysical Observatory;

    Crimean Astrophysical Observatory;

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  • 正文语种 eng
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