论文标题

类星体作为高红移标准蜡烛

Quasars as high-redshift standard candles

论文作者

Sacchi, A., Risaliti, G., Signorini, M., Lusso, E., Nardini, E., Bargiacchi, G., Bisogni, S., Civano, F., Elvis, M., Fabbiano, G., Gilli, R., Trefoloni, B., Vignali, C.

论文摘要

类星体中的X射线和紫外线(UV)光度之间的非线性关系已用于推导类星体距离,并在红移最高$ z \ sim $ 7上构建哈勃图$ 7。此宇宙学应用程序基于对送货和光度的独立性的假设。我们希望通过研究X射线和紫外线带中高红移类星体的光谱特性来检验该假设的可靠性。我们对130个类星体的样本($ z> $ 2.5)进行了一对一的分析,具有高质量的X射线和紫外线光谱观测。我们发现,不仅X射线与紫外线相关性仍然存在于这些红移,而且它的内在分散体低至0.12 DEX(先前的工作达到0.20 $ -0.22 dex)。对于$ z \ sim $ 3的类星体样本,具有特别高质量的观察结果,色散进一步下降到0.09 dex,这一值完全由内在变异性和源几何效应负责。在X射线和紫外线中,这些类星体的复合光谱在较低的红移时都没有任何差异。高和低$ z $类星体之间的光谱差异以及X射线与紫外线关系的紧密度表明该关系中没有进化效应。因此,可以安全地使用它来得出类星体距离。在此假设下,我们以15%的不确定性获得了$ z \ sim $ 3的光度距离的测量,并且在4 $σ$张力中与一致性模型。

The non-linear relation between the X-ray and ultraviolet (UV) luminosity in quasars has been used to derive quasar distances and to build a Hubble diagram at redshifts up to $z\sim$ 7. This cosmological application is based on the assumption of independence of the relation on redshift and luminosity. We want to test the reliability of this hypothesis by studying the spectroscopic properties of high-redshift quasars in the X-ray and UV bands. We performed a one-by-one analysis of a sample of 130 quasars at $z>$ 2.5 with high-quality X-ray and UV spectroscopic observations. We found that not only the X-ray to UV correlation still holds at these redshifts, but its intrinsic dispersion is as low as 0.12 dex (previous works reached 0.20$-$0.22 dex). For a sample of quasars at $z\sim$ 3 with particularly high-quality observations the dispersion further drops to 0.09 dex, a value entirely accountable for by intrinsic variability and source geometry effects. The composite spectra of these quasars, in both the X-rays and the UV, do not show any difference with respect to the average spectra of quasars at lower redshifts. The absence of any spectral difference between high- and low-$z$ quasars and the tightness of the X-ray to UV relation suggests that no evolutionary effects are present in the relation. Therefore, it can be safely employed to derive quasar distances. Under this assumption, we obtain a measurement of the luminosity distance at $z\sim$ 3 with 15 % uncertainty, and in a 4$σ$ tension with the concordance model.

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