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Solar Plasma Temperature Diagnostics in Flares and Active Regions from Spectral Lines in the Range 280–330-A in the SPIRIT/CORONAS-F Experiment

机译:在SPIRIT / CORONAS-F实验中,从范围为280-330-A的谱线中的耀斑和有效区域中的太阳等离子体温度诊断

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摘要

Plasma temperature diagnostics in solar flares and active regions has been carried out using data from the SPIRIT spectroheliograph onboard the CORONAS-F satellite. The temperature distribution of the differential emission measure (DEM) has been determined from the relative intensities of spectral lines recorded in the spectral range 280-330A in the period from 2001 to 2005. Analysis of these distributions has led to the conclusion about the existence of active regions with various “characteristic” temperature compositions. The presence of a hot plasma with temperatures log T = 6.8–7.2 in active regions has been established for the first time from XUV spectroscopic data and monochromatic X-ray line images. The DEM distribution for intense long-decay flares has also been obtained for the first time and a similarity of the temperature compositions for flares of different classes at the decay phase has been found. The spectra have been modeled on the basis of the calculated DEMs. The systematic discrepancies between the calculated and measured line intensities are discussed.
机译:太阳耀斑和活跃区域的等离子体温度诊断已使用CORONAS-F卫星上SPIRIT光谱仪的数据进行了诊断。根据2001年至2005年期间在光谱范围280-330A中记录的光谱线的相对强度,确定了差分发射量度(DEM)的温度分布。对这些分布的分析得出了关于存在的结论。具有各种“特征”温度成分的有源区。根据XUV光谱数据和单色X射线线图像,首次确定了活动区域中温度记录T = 6.8–7.2的热等离子体的存在。还首次获得了用于强衰变长火炬的DEM分布,并且发现了衰减阶段不同类别火炬的温度组成相似。光谱是根据计算的DEM建模的。讨论了计算线强度和测量线强度之间的系统差异。

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