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Resonant damping of kink oscillations of thin cooling and expanding coronal magnetic loops

机译:薄冷却和日冕磁环的扭结振荡的共振阻尼

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We have considered resonant damping of kink oscillations of cooling and expanding coronal magnetic loops. We derived an evolutionary equation describing the dependence of the oscillation amplitude on time. When there is no resonant damping, this equation reduces to the condition of conservation of a previously derived adiabatic invariant. We used the evolutionary equation describing the amplitude to study the competition between damping due to resonant absorption and amplification due to cooling. Our main aim is to investigate the effect of loop expansion on this process. We show that the loop expansion acts in favour of amplification. We found that, when there is no resonant damping, the larger the loop expansion the faster the amplitude growths. When the oscillation amplitude decays due to resonant damping, the loop expansion reduces the damping rate. For some values of parameters the loop expansion can fully counterbalance the amplitude decay and turn the amplitude evolution into amplification.
机译:我们考虑了冷却和扩展冠状磁环扭结振荡的共振阻尼。我们推导了一个演化方程,描述了振幅随时间的变化。当没有共振阻尼时,该方程式简化为先前导出的绝热不变量的守恒条件。我们使用描述振幅的演化方程研究共振吸收引起的阻尼与冷却引起的放大之间的竞争。我们的主要目的是研究循环扩展对此过程的影响。我们表明,循环扩展的行为有利于放大。我们发现,当没有共振阻尼时,环路扩展越大,幅度增长越快。当振荡振幅由于共振阻尼而衰减时,环路扩展会降低阻尼率。对于某些参数值,环路扩展可以完全抵消振幅衰减,并将振幅演变变为放大。

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