论文标题

从特殊的本地宇宙中的宇宙学推断

Cosmological inference from within the peculiar local universe

论文作者

Mohayaee, Roya, Rameez, Mohamed, Sarkar, Subir

论文摘要

由于宇宙结构的形成而导致的“特殊”速度的存在标志着真实宇宙与通常假定的Friedmann-Lemaítre-Robertson-Walker指标之间的不和谐点,该指标仅可容纳大型上平滑的哈勃扩展。在标准的$λ$ CDM型号框架中,IA类型超新星数据通常被“校正”观察者和超新星宿主星系的特殊速度相对于宇宙休息帧,以推断出从其竖琴间图中加速扩展率的证据。但是,观察结果表明,与$λ$ CDM的期望相反,观察到了强大,连贯的本地批量流,而无需衰减到红移$ z \ gtrsim 0.1 $ 0.1 $。通过查询黑色天空哈勃人卷 - 体积n型模拟的光环目录,我们发现将观察者像我们本地宇宙这样的异常环境中应看到JLA目录中的超新星之间的相关性,而JLA目录中的超新星比典型或哥白尼的观察者强的2-8倍。这说明了我们发现特殊的速度校正对超新星数据推断的宇宙常数的价值产生了很大的影响。我们还证明,通过比较密度和速度字段,类似本地宇宙的观察者将推断群集参数$ s_8 $的向下偏置值。因此,对特殊的本地宇宙的更现实的建模对于正确解释宇宙学数据至关重要。

The existence of 'peculiar' velocities due to the formation of cosmic structure marks a point of discord between the real Universe and the usually assumed Friedmann-Lemaítre-Robertson-Walker metric which accomodates only the smooth Hubble expansion on large scales. In the standard $Λ$CDM model framework, Type Ia supernovae data are routinely "corrected" for the peculiar velocities of both the observer and the supernova host galaxies relative to the cosmic rest frame, in order to infer evidence for acceleration of the expansion rate from their Hubble diagram. However observations indicate a strong, coherent local bulk flow that continues outward without decaying out to a redshift $z \gtrsim 0.1$, contrary to the $Λ$CDM expectation. By querying the halo catalogue of the Dark Sky Hubble-volume N-body simulation, we find that an observer placed in an unusual environment like our local Universe should see correlations between supernovae in the JLA catalogue that are 2-8 times stronger than seen by a typical or Copernican observer. This accounts for our finding that peculiar velocity corrections have a large impact on the value of the Cosmological Constant inferred from supernova data. We also demonstrate that local Universe-like observers will infer a downward biased value of the clustering parameter $S_8$ from comparing the density and velocity fields. More realistic modelling of the peculiar local Universe is thus essential for correctly interpreting cosmological data.

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