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Dynamical spatial curvature as a fit to Type Ia supernovae

机译:动态空间曲率作为拟合IA Supernovae

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摘要

Few statements in cosmology can be made without assuming a cosmological model within which to interpret data. Statements about cosmic acceleration are no exception to this rule, and the inferred positive volume acceleration of our universe often quoted in the literature is valid in the context of the standard Friedmann-Lemaitre-Robertson-Walker (FLRW) class of spacetimes. Using the Joint Light-curve Analysis (JLA) catalogue of supernovae Type Ia (SNIa), we examine the fit of a class of exact scaling solutions with dynamical spatial curvature formulated in the framework of a scalar averaging scheme for relativistic inhomogeneous spacetimes. In these models, global volume acceleration may emerge as a result of the nonlocal variance between expansion rates of clusters and voids, the latter gaining volume dominance in the late-epoch universe. We find best-fit parameters for a scaling model of backreaction that are reasonably consistent with previously found constraints from SNIa, CMB, and baryon acoustic oscillations data. The quality of fit of the scaling solutions is indistinguishable from that of the ACDM model and the timescape cosmology from an Akaike Information Criterion (AIC) perspective. This indicates that a broad class of models can account for the z < similar to 1 expansion history.
机译:可以在不假设宇宙学模型中解释数据的宇宙学模型的宇宙学中的几个陈述。关于宇宙加速的陈述也不例外,我们的宇宙的推断正卷加速度在文献中经常引用在标准Friedmann-Lemaitre-Robertson-Walker(FLRW)类的空间中有效。使用SuperNovae IA型(SNIA)的联合光曲线分析(JLA)目录,我们通过在标量均匀的刻度的标量平均方案的框架内配制的动态空间曲率来检查一类精确的缩放解决方案。在这些模型中,由于群集和空隙的扩展速率之间的非识别差异,可以出现全球体积加速度,后者在巨头宇宙中获得的产量优势。我们为反应的缩放模型找到了最适合的参数,该参数与先前发现的SNIA,CMB和Baryon声学振荡数据的限制合理符合。缩放解决方案的拟合质量与ACDM模型的拟合和来自Akaike信息标准(AIC)的透视的TimeScape宇宙无法区分。这表明广泛的模型可以解释Z <类似于1个扩展历史记录。

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