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Physical Properties of Wave Motion in Inclined Magnetic Fields within Sunspot Penumbrae

机译:太阳黑子半影内倾斜磁场中波动的物理性质

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At the surface of the Sun, acoustic waves appear to be affected by the presence of strong magnetic fields in active regions. We explore the possibility that the inclined magnetic field in sunspot penumbrae may convert primarily vertically-propagating acoustic waves into elliptical motion. We use helioseismic holography to measure the modulus and phase of the correlation between incoming acoustic waves and the local surface motion within two sunspots. These correlations are modeled by assuming the surface motion to be elliptical, and we explore the properties of the elliptical motion on the magnetic-field inclination. We also demonstrate that the phase shift of the outward-propagating waves is opposite to the phase shift of the inward-propagating waves in stronger, more vertical fields, but similar to the inward phase shifts in weaker, more-inclined fields.
机译:在太阳表面,声波似乎受到活动区域中强磁场的影响。我们探索黑子半影中倾斜磁场可能主要将垂直传播的声波转换为椭圆运动的可能性。我们使用流变全息术来测量入射声波与两个黑子内局部表面运动之间的相关性的模量和相位。通过假设表面运动是椭圆形来对这些相关关系进行建模,然后我们研究椭圆运动在磁场倾斜上的性质。我们还证明,向外传播的波的相移与较强,垂直度更高的场中向内传播的波的相移相反,但与较弱的,较倾斜的场中向内的相移相似。

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