论文标题
在重力波的帮助下,使用距离总和规则对宇宙模型无关的测量
Cosmological model-independent measurement of cosmic curvature using distance sum rule with the help of gravitational waves
论文作者
论文摘要
尽管使用宇宙微波背景各向异性观察的宇宙曲率在标准宇宙学模型中受到了严格的限制,但仅使用宇宙学模型与独立模型的方式独立测量此关键参数仍然非常重要。强力透镜(SGL)中的距离总和规则提供了这样的方式,前提是总和规则中的三个距离可以通过其他观测值校准。在本文中,我们提出重力波(GWS)可用于提供SGL方法中的距离校准,该方法可以避免依赖距离梯子并覆盖更宽的红移范围。以爱因斯坦望远镜的模拟GW标准警笛观察为例,我们表明该方案是可行的和有利的。我们发现$δω_K\ simeq 0.17 $带有当前的SGL数据,这比使用SN校准的情况要精确。此外,我们考虑即将进行的LSST调查,预计将观察到许多SGL系统,并且发现$ 10^4 $ SGL数据可以在GWS的帮助下提供$δω_K\ simeq 10^{ - 2} $的精确度量。此外,我们的结果证实,这种约束$ω_k$的方法在很大程度上取决于镜头模型。但是,由于未来的大规模调查观察到越来越多的SGL样品,因此获得更准确的现象学模型是可以预测的,这将显着改善宇宙曲率的约束。
Although the cosmic curvature has been tightly constrained in the standard cosmological model using observations of cosmic microwave background anisotropies, it is still of great importance to independently measure this key parameter using only late-universe observations in a cosmological model-independent way. The distance sum rule in strong gravitational lensing (SGL) provides such a way, provided that the three distances in the sum rule can be calibrated by other observations. In this paper, we propose that gravitational waves (GWs) can be used to provide the distance calibration in the SGL method, which can avoid the dependence on distance ladder and cover a wider redshift range. Using the simulated GW standard siren observation by the Einstein Telescope as an example, we show that this scheme is feasible and advantageous. We find that $ΔΩ_k\simeq 0.17$ with the current SGL data, which is slightly more precise than the case of using SN to calibrate. Furthermore, we consider the forthcoming LSST survey that is expected to observe many SGL systems, and we find that about $10^4$ SGL data could provide the precise measurement of $ΔΩ_k\simeq 10^{-2}$ with the help of GWs. In addition, our results confirm that this method of constraining $Ω_k$ is strongly dependent on lens models. However, obtaining a more accurate phenomenological model for lens galaxies is highly predictable as future massive surveys observe more and more SGL samples, which will significantly improve the constraint of cosmic curvature.