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DIAMAGNETIC AND EXPANSION EFFECTS ON THE OBSERVABLE PROPERTIES OF THE SLOW SOLAR WIND IN A CORONAL STREAMER

机译:反磁和膨胀效应对冠状刮水器中慢速太阳风的可观察特性的影响

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The plasma density enhancements recently observed by the Large-Angle Spectrometric Coronagraph (LASCO) instrument on board the Solar and Heliospheric Observatory (SOHO) spacecraft have sparked considerable interest. In our previous theoretical study of the formation and initial motion of these density enhancements it is found that beyond the helmet cusp of a coronal streamer the magnetized wake configuration is resistively unstable, that a traveling magnetic island develops at the center of the streamer, and that density enhancements occur within the magnetic islands. As the massive magnetic island travels outward, both its speed and width increase. The island passively traces the acceleration of the inner part of the wake. In the present paper a few spherical geometry effects are included, taking into account both the radial divergence of the magnetic field lines and the average expansion undergone by a parcel of plasma propagating outward, using the expanding box model (EBM), and the diamagnetic force due to the overall magnetic field radial gradients, the so-called melon-seed force. It is found that the values of the acceleration and density contrasts can be in good agreement with LASCO observations, provided the spherical divergence of the magnetic lines starts beyond a critical distance from the Sun and the initial stage of the formation and acceleration of the plasmoid is due to the Cartesian evolution of MHD instabilities. This result provides a constraint on the topology of the magnetic field in the coronal streamer.
机译:最近通过太阳和日球观测台(SOHO)航天器上的大角光谱日冕仪(LASCO)观测到的等离子体密度提高引起了人们的极大兴趣。在我们先前对这些密度增强的形成和初始运动的理论研究中,发现在冠状拖缆的头盔尖端之外,磁化的尾流构造具有电阻性不稳定的特性,在拖缆的中心形成了一个行进的磁岛,并且在磁岛内发生密度增强。随着巨大的磁性岛向外移动,其速度和宽度都会增加。该岛被动地跟踪尾流内部的加速度。在本文中,考虑了磁场线的径向发散以及使用扩展箱模型(EBM)向外扩散的一小堆等离子体所经历的平均扩展,考虑了一些球形几何效应由于整体磁场的径向梯度,即所谓的瓜子力。可以发现,加速度和密度对比的值可以与LASCO观测值很好地吻合,前提是磁力线的球面发散开始于距太阳的临界距离之外,且等离子体的形成和加速的初始阶段为由于MHD不稳定性的笛卡尔演化。该结果对冠状拖缆中的磁场拓扑提供了约束。

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