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首页> 外文期刊>Physical review letters >Stringent Restriction from the Growth of Large-Scale Structure on Apparent Acceleration in Inhomogeneous Cosmological Models
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Stringent Restriction from the Growth of Large-Scale Structure on Apparent Acceleration in Inhomogeneous Cosmological Models

机译:非均匀宇宙学模型中表观加速度对大型结构生长的严格限制

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摘要

Probes of cosmic expansion constitute the main basis for arguments to support or refute a possible apparent acceleration due to different expansion rates in the Universe as described by inhomogeneous cosmological models. We present in this Letter a separate argument based on results from an analysis of the growth rate of large-scale structure in the Universe as modeled by the inhomogeneous cosmological models of Szekeres. We use the models with no assumptions of spherical or axial symmetries. We find that while the Szekeres models can fit very well the observed expansion history without a A, they fail to produce the observed late-time suppression in the growth unless A is added to the dynamics. A simultaneous fit to the supernova and growth factor data shows that the cold dark matter model with a cosmological constant (ACDM) provides consistency with the data at a confidence level of 99.65%, while the Szekeres model without A achieves only a 60.46% level. When the data sets are considered separately, the Szekeres with no A fits the supernova data as well as the ACDM does, but provides a very poor fit to the growth data with only 31.31% consistency level compared to 99.99% for the ACDM. This absence of late-time growth suppression in inhomogeneous models without a A is consolidated by a physical explanation.
机译:宇宙膨胀的探究构成了支持或反驳可能存在的表观加速度的主要依据,这是由宇宙的不均匀宇宙学模型所描述的,因为宇宙中的膨胀率不同。我们在这封信中提出一个单独的论据,该论据是基于对塞克勒斯不均匀宇宙学模型所模拟的宇宙中大型结构的增长率的分析结果。我们在没有球形或轴向对称性假设的情况下使用模型。我们发现,尽管Szekeres模型可以很好地拟合观察到的没有A的扩展历史,但是除非将A添加到动力学中,否则它们无法产生观察到的后期生长抑制。对超新星和生长因子数据的同时拟合表明,具有宇宙学常数(ACDM)的冷暗物质模型以99.65%的置信度与数据保持一致,而没有A的Szekeres模型仅达到60.46%的水平。当分别考虑数据集时,没有A的Szekeres和ACDM一样都适合超新星数据,但是对增长数据的拟合非常差,一致性水平仅为31.31%,而ACDM为99.99%。在没有A的非均质模型中没有后期生长抑制的现象可以通过物理解释加以巩固。

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