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Coronal Seismology Using Transverse Oscillations of Non-planar Coronal Loops

机译:使用非平面日冕环的横向振荡的日冕地震学

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摘要

We continue studying the robustness of coronal seismology. We concentrate on two seismological applications: the estimate of coronal scale height using the ratio of periods of the fundamental harmonic and first overtone of kink oscillations, and the estimate of magnetic-field magnitude using the fundamental harmonic. Our analysis is based on the model of non-planar coronal loops suggested by Ruderman and Scott (Astron. Astrophys. 529, A33, 2011), which was formulated using the linearized MHD equations. We show that the loop non-planarity does not affect the ratio of periods of the fundamental harmonic and first overtone, and thus it is unimportant for the estimates of the coronal scale height. We also show that the density variation along the loop and the loop non-planarity only weakly affect the estimates of the magnetic-field magnitude. Hence, using the simplest model of coronal loops, which is a straight homogeneous magnetic cylinder, provides sufficiently accurate estimates for the magnetic-field magnitude.
机译:我们将继续研究日冕地震学的鲁棒性。我们专注于两种地震学应用:使用基本谐波的周期与扭结振荡的第一泛音之比估算日冕尺度高度,以及使用基本谐波估算磁场强度。我们的分析基于Ruderman和Scott建议的非平面冠状环模型(Astron。Astrophys。529,A33,2011),该模型是使用线性化的MHD方程制定的。我们表明,环路的非平面性不会影响基波谐波和一次谐波的周期之比,因此对于冠状尺度高度的估计并不重要。我们还表明,沿环路的密度变化和环路的非平面性只会对磁场强度的估计产生微弱的影响。因此,使用最简单的日冕环模型(即直的均质磁圆柱体)可提供足够准确的磁场强度估算值。

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