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A model of interacting dark fluids tested with supernovae and Baryon Acoustic Oscillations data

机译:利用超新星和重子声振荡数据测试的相互作用暗流体模型

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We compare supernovae and Baryon Acoustic Oscillations data to the predictions of a cosmological model of interacting dark matter and dark energy. This theoretical model can be derived from the effective field theory of Einstein–Cartan gravity with two scaling exponentsδGandδΛ, related to the interaction between dark matter and dark energy. We perform aχ2fit to the data to compare and contrast it with the standard ΛCDM model. We then explore the range of parameter of the model which gives a betterχ2than the standard cosmological model. All those results lead to tight constraints on the scaling exponents of the model. Our conclusion is that this class of models, provides a decent alternative to the ΛCDM model.
机译:我们将超新星和重子声振荡数据与相互作用的暗物质和暗能量的宇宙学模型的预测进行了比较。这个理论模型可以从爱因斯坦-卡坦引力的有效场论中得出,它具有两个与暗物质和暗能量之间的相互作用有关的标度δG和δΛ。我们对数据执行χ2拟合,以将其与标准ΛCDM模型进行比较和对比。然后,我们探索该模型的参数范围,该范围给出了比标准宇宙学模型更好的χ2。所有这些结果导致对模型缩放指数的严格约束。我们的结论是,此类模型为ΛCDM模型提供了不错的选择。

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