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Magnetohydrodynamic kink waves in two-dimensional non-uniform prominence threads

机译:二维非均匀凸出线上的磁流体动力扭结波

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摘要

Aims. We analyse the oscillatory properties of resonantly damped transverse kink oscillations in two-dimensional prominence threads. Methods. The fine structures are modelled as cylindrically symmetric magnetic flux tubes with a dense central part with prominence plasma properties and an evacuated part, both surrounded by coronal plasma. The equilibrium density is allowed to vary non-uniformly in both the transverse and the longitudinal directions. We examine the influence of longitudinal density structuring on periods, damping times, and damping rates for transverse kink modes computed by numerically solving the linear resistive magnetohydrodynamic (MHD) equations. Results. The relevant parameters are the length of the thread and the density in the evacuated part of the tube, two quantities that are difficult to directly estimate from observations. We find that both of them strongly influence the oscillatory periods and damping times, and to a lesser extent the damping ratios. The analysis of the spatial distribution of perturbations and of the energy flux into the resonances allows us to explain the obtained damping times. Conclusions. Implications for prominence seismology, the physics of resonantly damped kink modes in two-dimensional magnetic flux tubes, and the heating of prominence plasmas are discussed.
机译:目的我们分析了二维突出螺纹中共振阻尼横向扭结振动的振动特性。方法。精细结构被建模为圆柱对称的磁通管,其中心部分具有密集的等离子体特性,而真空部分则被冠状等离子体包围。允许平衡密度沿横向和纵向均不均匀地变化。我们研究了纵向密度结构对周期,阻尼时间和阻尼率的影响,这些应力是通过数值求解线性电阻磁流体动力学(MHD)方程计算得到的横向扭结模式的。结果。相关参数是线的长度和管的真空部分的密度,这两个量很难直接从观察中估计。我们发现它们都强烈影响振荡周期和阻尼时间,并在较小程度上影响阻尼比。对扰动的空间分布以及进入共振的能量通量的分析使我们能够解释获得的阻尼时间。结论。讨论了对突出地震学,二维磁通量管中共振阻尼扭结模式的物理学以及突出等离子体的加热的影响。

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