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Line intensity enhancements in stellar coronal X-ray spectra due to opacity effects

机译:由于不透明效应,恒星冠状X射线谱线强度增强

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摘要

Context. The I(15.01 Å)/I(16.78 Å) emission line intensity ratio in Fe xvii has been reported to deviate from its theoretical valuein solar and stellar X-ray spectra. This is attributed to opacity in the 15.01 Å line, leading to a reduction in its intensity, and wasinterpreted in terms of a geometry in which the emitters and absorbers are spatially distinct.Aims. We study the I(15.01 Å)/I(16.78 Å) intensity ratio for the active cool dwarf EV Lac, in both flare and quiescent spectra.Methods. The observations were obtained with the Reflection Grating Spectrometer on the XMM-Newton satellite. The emissionmeasure distribution versus temperature reconstruction technique is used for our analysis.Results. We find that the 15.01 Å line exhibits a significant enhancement in intensity over the optically thin value. To our knowledge,this is the first time that such an enhancement has been detected on such a sound statistical basis. We interpret this enhancementin terms of a geometry in which the emitters and absorbers are not spatially distinct, and where the geometry is such that resonantpumping of the upper level has a greater effect on the observed line intensity than resonant absorption in the line-of-sight.
机译:上下文。据报道,Fe xvii中的I(15.01Å)/ I(16.78Å)发射线强度比在太阳和恒星X射线光谱中偏离了其理论值。这归因于15.01Å线中的不透明性,从而导致其强度降低,并根据发射器和吸收器在空间上不同的几何形状进行解释。我们在耀斑和静态光谱中研究了主动冷矮EV Lac的I(15.01Å)/ I(16.78Å)强度比。观测是通过XMM-Newton卫星上的反射光栅光谱仪获得的。分析采用排放量分布与温度重建技术。我们发现15.01Å线在光学上较薄的值上显示出明显的强度增强。据我们所知,这是第一次在如此可靠的统计基础上检测到这种增强。我们从发射器和吸收器在空间上没有区别的几何形状来解释这种增强,并且该几何形状使得上层的共振泵浦对所观察到的线强度的影响大于视线中的共振吸收。 。

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