论文标题

限制宇宙常数的替代方案:广义耦合和比例不变性

Constraining alternatives to a cosmological constant: generalized couplings and scale invariance

论文作者

Fernandes, C. B. D., Martins, C. J. A. P., Rocha, B. A. R.

论文摘要

我们对三个候选模型的观察性低频背景约束进行了比较分析,以解释宇宙的低降射加速度。 Feng和Carloni的广义耦合模型以及Maeder的规模不变模型(可以将其解释为双光理论)与Chevallier,Polarski和Linder的传统参数化进行了比较。原则上,在真空中,普遍的耦合模型等于一般相对论,其中包含两种类型的真空能量:通常的宇宙常数加上由于物质领域引起的第二个贡献。我们表明,模型必须同意低红移观察的必要条件,而没有统计学的证据证明第二次存在。另一方面,规模不变模型有效地具有时间依赖于时间的宇宙常数。在这种情况下,我们表明,物质密度$ω_m\ sim0.3 $是数据相对较差的数据,最佳拟合模型将需要具有较小密度和状态参数方程明显的正程的流体。

We present a comparative analysis of observational low-redshift background constraints on three candidate models for explaining the low-redshift acceleration of the universe. The generalized coupling model by Feng and Carloni and the scale invariant model by Maeder (both of which can be interpreted as bimetric theories) are compared to the traditional parametrization of Chevallier, Polarski and Linder. In principle the generalized coupling model, which in vacuum is equivalent to General Relativity, contains two types of vacuum energy: the usual cosmological constant plus a second contribution due to the matter fields. We show that the former is necessary for the model to agree with low-redshift observations, while there is no statistically significant evidence for the presence of the second. On the other hand the scale invariant model effectively has a time-dependent cosmological constant. In this case we show that a matter density $Ω_m\sim0.3$ is a relatively poor fit to the data, and the best-fit model would require a fluid with a much smaller density and a significantly positive equation of state parameter.

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