论文标题
在太阳光球中一个小新兴的双锥体中的磁场的签名
Signatures of Untwisting Magnetic Field in a Small Emerging Bipole in the Solar Photosphere
论文作者
论文摘要
我们使用Helioseissic和磁成像仪(HMI)在板载太阳能动力学天文台(SDO)进行的观测值对流体运动及其在小型双极新兴通量区域进行研究。我们采用多普勒观测值的局部相关跟踪,以遵循水平流体运动和视线磁图以跟随磁通出现。垂直涡度和水平差异的变化用于得出磁场中不断发展的曲折的标志。我们的分析表明,磁通量的两个极性在磁通出现的早期阶段朝相反的方向旋转,表明磁场中出现前的前旋转曲折。我们进一步发现,在出现期间,邻近的非磁性区域的旋转运动有所增加。我们估计磁能和动能,发现磁能大约比动能大十倍。在进化过程中,当磁能减少时,观察到动能的增加,表明能量从磁通管的放松转移到周围的流体运动。因此,我们的结果表明,在新兴磁场中存在前出现曲折的存在,这在半球螺旋性规则中很重要,在这种情况下,必须进行详细的统计研究。此外,我们的观察结果表明,由于磁场不弯曲的磁场,新兴通量区域可能会广泛产生扭转波,这对向上的能量转运的意义。
We perform a study of fluid motions and its temporal evolution in and around a small bipolar emerging flux region using observations made by the Helioseismic and Magnetic Imager (HMI) on-board the Solar Dynamics Observatory (SDO). We employ local correlation tracking of the Doppler observations to follow horizontal fluid motions and line-of-sight magnetograms to follow the flux emergence. Changes in vertical vorticity and horizontal divergence are used to derive signatures of evolving twists in the magnetic field. Our analysis reveals that the two polarities of the magnetic flux swirl in opposite directions in early stages of flux emergence indicating an unwinding of the pre-emergence twists in the magnetic field. We further find that during the emergence, there is an increase in swirly motions in the neighbouring non-magnetic regions. We estimate the magnetic and kinetic energies and find that magnetic energy is about a factor of ten larger than the kinetic energy. During the evolution, when the magnetic energy decreases, an increase in the kinetic energy is observed indicating transfer of energy from the unwinding of magnetic flux tube to the surrounding fluid motions. Our results thus demonstrate the presence of pre-emergence twists in emerging magnetic field that is important in the context of the hemispheric helicity rule warranting a detailed statistical study in this context. Further, our observations point to a possible widespread generation of torsional waves in emerging flux regions due to the untwisting magnetic field with implications for upward energy transport to the corona.