论文标题

强烈的IA型超新星作为测量哈勃常数和宇宙曲率的精确的晚期探针

Strongly lensed type Ia supernovae as a precise late-universe probe of measuring the Hubble constant and cosmic curvature

论文作者

Qi, Jing-Zhao, Cui, Yu, Hu, Wei-Hong, Zhang, Jing-Fei, Cui, Jing-Lei, Zhang, Xin

论文摘要

预计强烈的IA型超新星(SNE IA)在测量多个图像的时间延迟方面具有一些优势,因此它们具有很大的潜力,可以发展为强大的后期宇宙宇宙学探针。在本文中,我们在时空调查(LSST)的时代(LSST)模拟了用时间延迟测量的镜头SNE IA样本。根据距离总和规则,我们使用镜头sne ia在后期宇宙中的哈勃常数$ h_0 $和宇宙曲率参数$ω_k$上实现与模型无关的约束。我们发现,如果可以观察到20个镜头,则对$ h_ {0} $的约束要比SH0ES协作的测量要好。当镜头IA的事件编号增加到100时,$ H_ {0} $的约束精度与Planck 2018数据的结果相当。考虑到200个镜头事件作为乐观的估计,我们获得$ΔH_0= 0.33 $ $ \ rm \ rm km \ s^{ - 1} \ mpc^{ - 1} $和$ΔΩ_k= 0.053 $。此外,我们还在不同的情况下模拟了镜头的类星体以进行比较,我们发现它们仍然是有用的宇宙学探测器,即使它们的约束精度远低于从镜头SNE IA中获得的约束。在LSST时代,预计从镜头SNE IA和镜头类星体中的时间延迟的测量结果均可产生$ΔH_0= 0.26〜 \ rm km km \ s^{ - 1} \ mpc^{ - 1} \ mpc^{ - 1} $ and $δω__k= 0.044 $。

Strongly lensed type Ia supernovae (SNe Ia) are expected to have some advantages in measuring time delays of multiple images, and so they have a great potential to be developed into a powerful late-universe cosmological probe. In this paper, we simulate a sample of lensed SNe Ia with time-delay measurements in the era of the Legacy Survey of Space and Time (LSST). Based on the distance sum rule, we use lensed SNe Ia to implement model-independent constraints on the Hubble constant $H_0$ and cosmic curvature parameter $Ω_K$ in the late universe. We find that if 20 lensed SNe Ia could be observed, the constraint on $H_{0}$ is better than the measurement by the SH0ES collaboration. When the event number of lensed SNe Ia increases to 100, the constraint precision of $H_{0}$ is comparable with the result from Planck 2018 data. Considering 200 lensed SNe Ia events as the optimistic estimation, we obtain $ΔH_0=0.33$ $\rm km\ s^{-1}\ Mpc^{-1}$ and $ΔΩ_K=0.053$. In addition, we also simulate lensed quasars in different scenarios to make a comparison and we find that they are still a useful cosmological probe even though the constraint precision from them is much less than that obtained from lensed SNe Ia. In the era of LSST, the measurements of time delay from both lensed SNe Ia and lensed quasars are expected to yield the results of $ΔH_0=0.26 ~\rm km\ s^{-1}\ Mpc^{-1}$ and $ΔΩ_K=0.044$.

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