论文标题

附近几个星形星系中气体电离的主要来源

The Main Sources of Gas Ionization in Several Nearby Star-Forming Galaxies

论文作者

Jalalabadi, Behjat Zarei, Abedi, Abbas, Moiseev, Alexei V.

论文摘要

发射线强度比用于区分气体电离的主要来源,以研究银河系星体培养基(ISM)的状态。在中间情况下,当来自某些来源的辐射的贡献时,识别就变得不确定。作为一个额外的参数,可以将视线中的气速分散添加到经典诊断图(即“ BPT-Sigma”关系)中,以帮助找到适当的解决方案。距BPT-Sigma图中每个点的H II型电离区域的曲线的最小距离可用于表征电离气体的激发机制。散射离子化气体(DIG)中的休克激发可以通过Sigma和Rho之间的相关性实现,而低水平湍流运动的H II区域的特征是没有这种相关性。我们考虑“ BPT-Sigma”关系以及Sigma和Rho之间的相关性,以确定附近几个恒星形成星系中的电离气体激发。速度分散剂的分布是从Sao Ras 6-m望远镜的扫描Fabry-Perot干涉仪观测值中获得的,而发射线比率是根据档案长期光谱光谱数据计算得出的。据报道,这项研究的结果是MRK 370,NGC 4068,UGC 8313和UGC 8508的结果。

The emission-line intensity ratios are used to distinguish the main sources of gas ionization to study the state of galactic interstellar medium (ISM). In intermediate cases, when the contributions of radiation from some sources mix, the identification becomes uncertain. As an extra parameter, the gas velocity dispersion in the line-of-sight can be added to classical diagnostic diagrams (i.e., "BPT-sigma" relations) to help finding an appropriate solution. The minimum distance from the curve that bounds the H II-type ionization region for each point in BPT-sigma diagram can be used to characterize the excitation mechanism of the ionized gas. The shock excitation in the diffuse ionized gas (DIG) can be realized by the correlation between sigma and rho, while the H II regions with low level turbulent motions can be characterized by the absence of this correlation. We consider the "BPT-sigma" relation and the correlation between sigma and rho to determine the ionized gas excitation in several nearby star-forming galaxies. Distributions of the velocity dispersion are obtained from the scanning Fabry-Perot interferometer observations at the SAO RAS 6-m telescope, whereas the emission-line ratios are calculated from the archival long-slit spectroscopic data. The results of this study are reported for Mrk 370, NGC 4068, UGC 8313, and UGC 8508.

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