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首页> 外文期刊>PASJ: Publications of the Astronomical Society of Japan >Hinode EUV Imaging Spectrometer observations of active region loop morphology: Implications for static heating models of coronal emission
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Hinode EUV Imaging Spectrometer observations of active region loop morphology: Implications for static heating models of coronal emission

机译:Hinode EUV成像光谱仪对活动区域回路形态的观察:对日冕发射的静态加热模型的启示

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Theoretically, magnetic fields are expected to expand as they rise above the photosphere and into the corona, so the apparent uniform cross-sections of active region loops are difficult to understand. There has been some debate as to whether coronal loops really have constant cross-sections, or are actually unresolved and composed of expanding threads within the constant cross-section envelopes. Furthermore, loop expansion is critical to the success or failure of hydrostatic models in reproducing the intensities and morphology of observed emission. We analyze Hinode EIS (EUV Imaging Spectrometer) observations of loops in active region 10953 and detect only moderate apex width expansion over a broad range of temperatures from log T-e/K = 5.6 to 6.25. The expansion is less than required by steady-state heating models of coronal emission suggesting that such models will have difficulty reproducing both low and high temperature loop emission simultaneously. At higher temperatures (> log T-e/K = 6.3) the apex widths increase substantially, but the emission at these temperatures likely comes from a combination of multiple loops. These observations demonstrate the advantage of EIS over previous instruments. For the first time, active region loops can be examined over a broad temperature range with high temperature fidelity and the same spatial resolution. The results therefore provide further clues to the coronal heating timescale and thus have implications for the direction of future modeling efforts.
机译:从理论上讲,磁场会随着它们上升到光球上方并进入电晕而扩展,因此很难理解有源区环路的明显均匀横截面。关于冠状环是否确实具有恒定的横截面,或者实际上未被解析并且由恒定横截面的包络线内的膨胀线组成,存在一些争论。此外,回路扩展对于重现观测到的发射强度和形态的静水力模型的成败至关重要。我们分析了活跃区域10953中回路的Hinode EIS(EUV成像光谱仪)观察结果,并且在从log T-e / K = 5.6到6.25的较宽温度范围内,仅检测到中等的顶点宽度扩展。该膨胀小于日冕发射的稳态加热模型所要求的,表明这种模型将难以同时再现低温和高温环路发射。在较高温度下(> log T-e / K = 6.3),顶点宽度会显着增加,但是在这些温度下的发射可能来自多个回路的组合。这些观察证明了EIS相对于先前仪器的优势。第一次,可以在宽的温度范围内以高温保真度和相同的空间分辨率检查有源区域环路。因此,结果为日冕加热的时间尺度提供了进一步的线索,因此对未来建模工作的方向具有影响。

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