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首页> 外文期刊>The Astrophysical journal >ON THE NATURE OF PROMINENCE EMISSION OBSERVED BY SDO/AIA
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ON THE NATURE OF PROMINENCE EMISSION OBSERVED BY SDO/AIA

机译:SDO / AIA观察到的突出辐射的性质

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The prominence-corona transition region (PCTR) plays a key role in the thermal and pressure equilibrium of solar prominences. Our knowledge of this interface is limited and several major issues remain open, including the thermal structure and, in particular, the maximum temperature of the detectable plasma. The high signal-to-noise ratio of images obtained by the Atmospheric Imaging Assembly (AIA) on NASA's Solar Dynamics Observatory clearly shows that prominences are often seen in emission in the 171 and 131 bands. We investigate the temperature sensitivity of these AIA bands for prominence observations, in order to infer the temperature content in an effort to explain the emission. Using the CHIANTI atomic database and previously determined prominence differential emission measure distributions, we build synthetic spectra to establish the main emission-line contributors in the AIA bands. We find that the Fe IX line always dominates the 171 band, even in the absence of plasma at 106 K temperatures, while the 131 band is dominated by Fe VIII. We conclude that the PCTR has sufficient plasma emitting at 4 × 105 K to be detected by AIA.
机译:突起-电晕过渡区(PCTR)在太阳突起的热和压力平衡中起关键作用。我们对该接口的了解有限,并且仍然存在一些主要问题,包括热结构,尤其是可检测等离子体的最高温度。由美国国家航空航天局太阳动力学天文台的大气成像组件(AIA)获得的图像的高信噪比清楚地表明,在171和131波段的发射中经常看到突出的部分。我们调查这些AIA波段对突出观测的温度敏感性,以便推断温度含量以解释发射。使用CHIANTI原子数据库和先前确定的突出差分发射量度分布,我们建立了合成光谱以建立AIA波段中的主要发射谱线贡献者。我们发现,即使在> 106 K的温度下不存在等离子体,Fe IX谱线也始终占据着171谱带的主导地位,而131谱带却由Fe VIII主导。我们得出的结论是PCTR在> 4×105 K时具有足够的等离子体发射,可以被AIA检测到。

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