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首页> 外文期刊>Astronomy and astrophysics >Comparison between observed and theoretical O?IV line ratios in the UV/EUV solar spectrum as derived by SUMER, CDS and EIS
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Comparison between observed and theoretical O?IV line ratios in the UV/EUV solar spectrum as derived by SUMER, CDS and EIS

机译:由SUMER,CDS和EIS得出的UV / EUV太阳光谱中观察到的O?IV线比率与理论上的O?IV线比率的比较

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Aims. The joint use of SoHO Solar Ultraviolet Measurement of Emitted Radiation (SUMER), Coronal Diagnostic Spectrometer (CDS) and Hinode Extreme-ultraviolet Imaging Spectrometer (EIS) allow observation of several O?iv line ratios, useful for temperature plasma diagnostics. Accurate atomic data are required to avoid interpretation errors in deriving the electron temperature from these ratios. Muglach et?al. (2010) found that the measured ratio I(787.72??)/I(279.93??) is lower than the predicted value by a factor 2–5. Here the predicted value for this ratio is revised using updated atomic data. A comparison with other observed O?iv line ratios is shown and the electron temperature is derived. Methods. The analysis is based on new observations made during the observational campaign of April 2009 and including three O?iv multiplets. The theoretical ratios have been derived using the Atomic Data and Analysis Structure (ADAS) database and include comparison with the most recent calculations available in the literature. Results. The discrepancy for the O?iv?I(787.72??)/I(279.93??) ratio has been solved by adding transitions involving higher excited levels, which have been omitted in previous atomic models. This results in a decrease of the theoretical line ratio, providing electron temperatures in the range of log?T?=?5.17–5.39, close to the temperature expected from a plasma in ionisation equilibrium.
机译:目的SoHO太阳紫外线辐射测量(SUMER),日冕诊断光谱仪(CDS)和Hinode极紫外成像光谱仪(EIS)的结合使用可以观察到几种O?iv线比,这对于温度等离子体诊断很有用。需要准确的原子数据,以避免在从这些比率得出电子温度时出现解释错误。 Muglach等人。 (2010年)发现实测比率I(787.72 ??)/ I(279.93 ??)比预测值低2-5倍。在此,使用更新的原子数据修改该比例的预测值。示出了与其他观察到的O fiv线比率的比较,并且得出了电子温度。方法。该分析基于2009年4月的观察运动期间所做的新观察,包括三个Oiv多重峰。理论比率是使用原子数据和分析结构(ADAS)数据库得出的,包括与文献中最新计算的比较。结果。通过增加涉及较高激发能级的跃迁,可以解决O ivδI(787.72ω)/ I(279.93ω)比的差异,这在先前的原子模型中已被省略。这会导致理论线比率的降低,从而使电子温度在logΔT?=?5.17–5.39的范围内,接近电离平衡中等离子体预期的温度。

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