作为标准烛光的类星体 VI.宇宙学样本的光谱验证

B. Trefoloni, E. Lusso, E. Nardini, G. Risaliti, A. Marconi, G. Bargiacchi, Andrea Sacchi, Paola Pietrini, M. Signorini
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引用次数: 0

摘要

最近收集了一个类星体样本,以研究它们在 2500 和 2 keV 的单色光度之间的非线性关系,并利用类星体作为一类新的 "标准化蜡烛"。将这种技术用于宇宙学目的依赖于类星体的紫外-光学光谱特性不会随红移而发生变化,也依赖于不存在可能的污染物,如尘埃消光和宿主星系的贡献。我们通过分析宇宙学类星体样本的光谱特性来解决这些可能存在的问题。我们制作了不同红移和吸积参数(黑洞质量、测光光度)的复合光谱,以研究复合光谱的连续谱特性随这些参数可能发生的演变。我们发现各种叠加光谱之间存在着明显的相似性。除了众所周知的发射线随光度(即鲍德温效应)和黑洞质量(即virial关系)的演变之外,由吸积盘产生的连续谱的整体形状并没有显示出与黑洞质量BH $)、测亮度($L_ bol $)或红移($z$)有任何统计学意义上的显著趋势。我们的类星体样本的复合光谱与光学中可忽略不计的内在变红(颜色过量 $E(B-V)0.01$)和宿主星系辐射(小于 10)水平相一致。我们测试了未计算的尘埃消光是否可以解释我们对 i tre 图的宇宙拟合与一致性 $ Lambda $CDM 模型之间的差异。解决这一矛盾所需的平均颜色过量应该随着红移的增加而增加,直至达到非物理学上的高值($E(B-V)在$z>3$时),这意味着类星体的内在发射比观测光谱所报告的要蓝得多,亮度也高得多。类星体光谱在整个参数空间内的相似性排除了平均连续谱特性随所探讨的任何参数而发生显著变化的可能性,从而证实了我们的样本在宇宙学应用方面的可靠性。最后,尘埃变红无法解释观测到的类星体 i 图与 $ Lambda $CDM 模型之间的紧张关系。
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Quasars as standard candles VI. Spectroscopic validation of the cosmological sample
A sample of quasars has been recently assembled to investigate the non-linear relation between their monochromatic luminosities at 2500\ and 2 keV and to exploit quasars as a new class of `standardized candles'. The use of this technique for cosmological purposes relies on the non-evolution with redshift of the UV-optical spectral properties of quasars, as well as on the absence of possible contaminants such as dust extinction and host galaxy contribution. We address these possible issues by analysing the spectral properties of our cosmological quasar sample. We produced composite spectra in different bins of redshift and accretion parameters (black hole mass, bolometric luminosity), to investigate any possible evolution of the spectral properties of the continuum of the composites with these parameters. We found a remarkable similarity amongst the various stacked spectra. Apart from the well known evolution of the emission lines with luminosity (i.e. the Baldwin effect) and black hole mass (i.e. the virial relation), the overall shape of the continuum, produced by the accretion disc, does not show any statistically significant trend with black-hole mass BH $), bolometric luminosity ($L_ bol $), or redshift ($z$). The composite spectrum of our quasar sample is consistent with negligible levels of both intrinsic reddening (with a colour excess $E(B-V) 0.01$) and host galaxy emission (less than 10) in the optical. We tested whether unaccounted dust extinction could explain the discrepancy between our cosmographic fit of the i tre diagram and the concordance $ Lambda $CDM model. The average colour excess required to solve the tension should increase with redshift up to unphysically high values ($E(B-V) at $z>3$) that would imply that the intrinsic emission of quasars is much bluer and more luminous than ever reported in observed spectra. The similarity of quasar spectra across the parameter space excludes a significant evolution of the average continuum properties with any of the explored parameters, confirming the reliability of our sample for cosmological applications. Lastly, dust reddening cannot account for the observed tension between the i tre diagram of quasars and the $ Lambda $CDM model.
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