论文标题

高积分类星体的高金属含量

High metal content of highly accreting quasars

论文作者

Śniegowska, Marzena, Marziani, Paola, Czerny, Bożena, Panda, Swayamtrupta, Martínez-Aldama, Mary Loli, del Olmo, Ascensión, D'Onofrio, Mauro

论文摘要

我们对据信属于极端种群A(XA)类星体的13种类星体的紫外线光谱进行了分析,旨在估算宽线发射气体的化学丰度。数量的宽线发射气体的金属性估计值受到许多警告的影响,尽管目前的数据表明可能沿着类星体主序列增加以及光学FE II发射的突出性可能增加。极端人口A排放最强的源在类星体普通人群方面具有多个优势,因为它们的光学和紫外线发射线可以解释为在不同的物理条件下,在类星体休息框架(来自病毒化气体)的低离子化成分的总和(来自病毒化气体),加上蓝色过量(磁盘风)。具体而言,就电离参数,云密度,金属性和柱密度而言。利用这些结果,我们分析了静止框架和布鲁斯升级的组件,从而利用了依赖性(对金属性$ z $的几种强度线比)。我们发现,强度线比作为金属性指标的有效性取决于物理条件。我们应用测得的诊断比来估计气体密度,电离和金属性等源的物理特性。我们的结果证实,不同动态条件的两个区域(低离子分量和蓝移过量)也显示出不同的物理条件,并暗示金属性值很高,并且可能沿着类星体主序列,最高为$ z \ gtrsim 10 z _ {\ odot} $。我们发现了一些证据表明铝相对于碳过度,这可能是由于超新星喷射的宽线发射气体的选择性富集所致。

We present an analysis of UV spectra of 13 quasars believed to belong to extreme Population A (xA) quasars, aimed at the estimation of the chemical abundances of the broad line emitting gas. Metallicity estimates for the broad line emitting gas of quasars are subject to a number of caveats, although present data suggest the possibility of an increase along the quasar main sequence along with prominence of optical Fe II emission. Extreme Population A sources with the strongest Fe II emission offer several advantages with respect to the quasar general population, as their optical and UV emission lines can be interpreted as the sum of a low-ionization component roughly at quasar rest frame (from virialized gas), plus a blueshifted excess (a disk wind), in different physical conditions. Specifically, in terms of ionization parameter, cloud density, metallicity and column density. Capitalizing on these results, we analyze the component at rest frame and the blueshifted one, exploiting the dependence (of several intensity line ratios on metallicity $Z$). We find that the validity of intensity line ratios as metallicity indicators depends on the physical conditions. We apply the measured diagnostic ratios to estimate the physical properties of sources such as density, ionization, and metallicity of the gas. Our results confirm that the two regions (the low-ionization component and the blue-shifted excess) of different dynamical conditions also show different physical conditions and suggest metallicity values that are high, and probably the highest along the quasar main sequence, with $Z \gtrsim 10 Z_{\odot}$. We found some evidence of an overabundance of Aluminium with respect to Carbon, possibly due to selective enrichment of the broad line emitting gas by supernova ejecta.

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