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Dielectric recombination and stability of warm gas in AGN

机译:AGN中温气的介电重组和稳定性

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High resolution ultraviolet and X-ray spectra show that material outflow occur from the close neighbourhoods of super-massive black holes in active galactic nuclei (AGN). The absorption features seen in the high resolution soft X-ray spectra is attributed to gas which is conventionally termed as the warm absorber (WA) and often the thermal equilibrium (stability) curve is used as a theoretical tool to offer insights into the nature of the WA. The shape of the stability curve is determined by factors like the spectral energy distribution of the ionizing flux and the chemical composition of the absorbing gas. We found that the stability curves obtained under the same set of assumptions for the prevalent physical conditions in the AGN environment, but using recently derived dielectronic recombination rates, give significantly different results from what is predicted with older atomic data. The variations in phase space region of the stability curves corresponding to WAs, lead to different physical predictions. The results obtained with the current dielectronic recombination rate coefficients are more reliable because the WA models along the stability curve have computed, updated coefficient values.
机译:高分辨率紫外线和X射线光谱表明,在活性银核(AGN)中超大规模黑洞的紧密邻域发生的材料流出。高分辨率软X射线光谱中看到的吸收特征归因于通常被称为暖吸收剂(WA)的气体,并且通常使用热平衡(稳定性)曲线作为理论工具,以便为本质提供有识Wa。稳定性曲线的形状由像电离通量的光谱能量分布和吸收气体的化学成分的因素确定。我们发现,在AGN环境中具有普遍的物理条件的相同假设下获得的稳定性曲线,但是使用最近导出的达精电子重组率,从旧原子数据预测的内容产生显着不同的结果。对应于的稳定性曲线的相空间区域的变化导致不同的物理预测。利用电流介质重组率系数获得的结果更可靠,因为沿稳定性曲线的WA模型已经计算,更新的系数值。

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