论文标题
评估群集边缘作为标准尺的潜力
Assessing the potential of cluster edges as a standard ruler
论文作者
论文摘要
我们全面评估了星系簇边缘作为测量宇宙学距离和探测外来物理学的标准统治者的潜力。面对五个替代宇宙学模型,以及来自不久的将来的黑暗能量光谱仪器调查的群集边缘,我们得出结论,群集边缘可以作为限制$λ$ CDM以上模型的有前途的探测器。特别是,从集群边缘的暗能量状态方程的约束精度仅比万神殿型超新星样品大约大两倍。我们发现,通过将群集边缘的约束功率与其他探针结合在一起可以更好地表现出来。 Combining cluster edges with cosmic microwave background, baryon acoustic oscillations, Type Ia supernovae, cosmic chronometers and simulated gravitational-wave events from the space-based Einstein Telescope, respectively, we constrain $Λ$CDM and find that the data combination of cosmic microwave background and cluster edges gives the best constraint on the Hubble constant $H_0$ with a $ 0.5 \%$ $精度和物质密度比$ω_m$,$ 1.6 \%$ $精度在这五对数据集中,重力波和集群边缘的数据组合几乎具有与IA Supernovae型和集群边缘的约束功率相同的约束功率。我们还通过将群集边缘与可用的宇宙学数据相结合,对$λ$ CDM给出了最严格的约束。在其他探针的帮助下,星系簇边缘可以在宇宙学量表上更好地对外来物理学的新见解。
We assess comprehensively the potential of galaxy cluster edges as a standard ruler in measuring cosmological distances and probing exotic physics. Confronting five alternative cosmological models with cluster edges from the near future Dark Energy Spectroscopic Instrument survey, we conclude that cluster edges can serve as a promising probe to constrain models beyond $Λ$CDM. Especially, the constraining precision of equation of state of dark energy from cluster edges is just about two times larger than that from the Pantheon Type Ia supernovae sample. We find that the constraining power of cluster edges can be exhibited better by combining it with other probes. Combining cluster edges with cosmic microwave background, baryon acoustic oscillations, Type Ia supernovae, cosmic chronometers and simulated gravitational-wave events from the space-based Einstein Telescope, respectively, we constrain $Λ$CDM and find that the data combination of cosmic microwave background and cluster edges gives the best constraint on the Hubble constant $H_0$ with a $0.5\%$ precision and the matter density ratio $Ω_m$ with a $1.6\%$ precision among these five pair datasets, and that the data combination of gravitational waves and cluster edges almost shares the same constraining power as that of Type Ia supernovae and cluster edges. We also give the most stringent constraint on $Λ$CDM by combining cluster edges with available cosmological data. With the help of other probes, galaxy cluster edges can give new insights on exotic physics better at cosmological scales.