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Coronal Loop Heating by Nanoflares: The Impact of the Field-aligned Distribution of the Heating on Loop Observations

机译:纳米耀斑的冕环加热:加热的场取向分布对环观测的影响

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Nanoflares occurring at subresolution strands with repetition times longer than the coronal cooling time are a promising candidate for coronal loop heating. To investigate the impact of the spatial distribution of the nanoflare heating on loop observables, we compute hydrodynamic simulations with several different spatial distributions (uniform, loop top, randomly localized, and footpoint). The outputs of the simulations are then used to calculate density and temperature diagnostics from synthetic TRACE and SXT observations. We find that the diagnostics depend only weakly on the spatial distribution of the heating and therefore are not especially useful for distinguishing among the different possibilities. Observations of the very high temperature plasmas that are present only in the earliest stages of nanoflares can shed more light on the field-aligned distribution of the heating.
机译:在亚分辨链上出现的重复爆发时间长于冠状冷却时间的纳米斑是冠状环加热的有希望的候选者。为了研究纳米火炬加热的空间分布对环圈可观测物的影响,我们计算了具有几种不同空间分布(均匀,环圈顶部,随机局部和脚点)的流体动力学模拟。然后将模拟的输出用于根据合成的TRACE和SXT观测值计算密度和温度诊断值。我们发现,诊断仅在很小程度上取决于加热的空间分布,因此对于区分不同的可能性并不是特别有用。仅在纳米火炬的最早阶段才出现的非常高温的等离子体的观察结果可以为加热的场定向分布提供更多的信息。

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