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首页> 外文期刊>The Astrophysical Journal. Letters >PROPERTIES AND MODELING OF UNRESOLVED FINE STRUCTURE LOOPS OBSERVED IN THE SOLAR TRANSITION REGION BY IRIS
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PROPERTIES AND MODELING OF UNRESOLVED FINE STRUCTURE LOOPS OBSERVED IN THE SOLAR TRANSITION REGION BY IRIS

机译:IRIS在太阳过渡区观察到的未解析精细结构环的性质和建模

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摘要

Recent observations from the Interface Region Imaging Spectrograph (IRIS) have discovered a new class of numerous low-lying dynamic loop structures, and it has been argued that they are the long-postulated unresolved fine structures (UFSs) that dominate the emission of the solar transition region. In this letter, we combine IRIS measurements of the properties of a sample of 108 UFSs (intensities, lengths, widths, lifetimes) with onedimensional non-equilibrium ionization simulations, using the HYDRAD hydrodynamic model to examine whether the UFSs are now truly spatially resolved in the sense of being individual structures rather than being composed of multiple magnetic threads. We find that a simulation of an impulsively heated single strand can reproduce most of the observed properties, suggesting that the UFSs may be resolved, and the distribution of UFS widths implies that they are structured on a spatial scale of 133 km on average. Spatial scales of a few hundred kilometers appear to be typical for a range of chromospheric and coronal structures, and we conjecture that this could be an important clue for understanding the coronal heating process.
机译:界面区域成像光谱仪(IRIS)的最新观测结果发现了一类新的众多低洼动态回路结构,据称它们是长期以来一直存在的未解析精细结构(UFS),它们主导着太阳辐射。过渡区。在这封信中,我们使用HYDRAD流体动力学模型将对108个UFS样品的性质(强度,长度,宽度,寿命)的IRIS测量与一维非平衡电离模拟相结合,以检查UFS现在是否真正在空间上解析了是单个结构而不是由多个磁线组成的感觉。我们发现,脉冲加热单链的模拟可以重现大多数观察到的特性,这表明UFS可以解析,而UFS宽度的分布意味着它们的平均空间尺度为133 km。几百公里的空间尺度似乎是一系列色球和冠状结构的典型特征,我们推测这可能是理解冠状加热过程的重要线索。

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