论文标题

使用类星体的哈勃常数和宇宙曲率的测量:超紧凑型射线结构和较强的重力镜头

Measurements of the Hubble constant and cosmic curvature with quasars: ultra-compact radio structure and strong gravitational lensing

论文作者

Qi, Jing-Zhao, Zhao, Jia-Wei, Cao, Shuo, Biesiada, Marek, Liu, Yuting

论文摘要

尽管哈勃常数$ h_0 $和空间曲率$ω_{k} $的精度非常高,但它们仍然遭受一些紧张局势。在本文中,我们提出了一种改进的方法,以结合无线电类星体中超紧凑结构的观察结果,并以类星体作为背景来源来确定$ H_0 $和$ω__{k} $同时。通过将距离总和规则应用于7个强镜系统的时间延迟测量和120个中间露光的数量校准的标准统治者,我们获得了对哈勃常数的严格约束($ h_0 = 78.3 \ 78.3 \ pm2.9 \ pm2.9 \ pm2.9 \ pm2.9 \ mathrm { ($ω_k= 0.49 \ pm0.24 $)。一方面,在平坦的宇宙的框架中,测得的哈勃常数($ h_0 = 73.6^{+1.8} _ { - 1.6} \ mathrm {〜km〜s^{ - 1} 〜mpc^{ - 1}} $)与源于本地距离ladderderder decision for conders codission,另一方面,如果我们将本地$ H_0 $测量作为先验,我们的结果与零空间曲率($ω_k= 0.23^{+0.15} _ { - 0.17} $)略微兼容,并且与平面宇宙没有显着偏差。最后,我们还评估了如果从vlbi观察值获得紧凑的无线电结构测量值,那么在非量子和flat $λ$ CDM模型中,是否会在$ H_0 $和$ω_{k} $上产生强大的约束。

Although the Hubble constant $H_0$ and spatial curvature $Ω_{K}$ have been measured with very high precision, they still suffer from some tensions. In this paper, we propose an improved method to combine the observations of ultra-compact structure in radio quasars and strong gravitational lensing with quasars acting as background sources to determine $H_0$ and $Ω_{K}$ simultaneously. By applying the distance sum rule to the time-delay measurements of 7 strong lensing systems and 120 intermediate-luminosity quasars calibrated as standard rulers, we obtain stringent constraints on the Hubble constant ($H_0=78.3\pm2.9 \mathrm{~km~s^{-1}~Mpc^{-1}}$) and the cosmic curvature ($Ω_K=0.49\pm0.24$). On the one hand, in the framework of a flat universe, the measured Hubble constant ($H_0=73.6^{+1.8}_{-1.6} \mathrm{~km~s^{-1}~Mpc^{-1}}$) is strongly consistent with that derived from the local distance ladder, with a precision of 2\%. On the other hand, if we use the local $H_0$ measurement as a prior, our results are marginally compatible with zero spatial curvature ($Ω_K=0.23^{+0.15}_{-0.17}$) and there is no significant deviation from a flat universe. Finally, we also evaluate whether strongly lensed quasars would produce robust constraints on $H_0$ and $Ω_{K}$ in the non-flat and flat $Λ$CDM model if the compact radio structure measurements are available from VLBI observations.

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