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Observational constraints on phantom crossing DGP gravity

机译:幻影穿越DGP重力的观测约束

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We study the observational constraints on the Phantom Crossing DGP model. We demonstrate that the crossing of the phantom divide does not occur within the framework of the original Dvali-Gabadadze-Porrati (DGP) model or the DGP model developed by Dvali and Turner. By extending their model in the framework of an extra dimension scenario, we study a model that realizes crossing of the phantom divide. We investigate the cosmological constraints obtained from the recent observational data of Type Ia supernovae, cosmic microwave background anisotropies, and baryon acoustic oscillations. The best-fit values of the parameters with 1σ (68%) errors for the Phantom Crossing DGP model are Ω_m, 0 = 0.27~(+0.02)_(-0.02), β = 0.54~(+0.24)_(-0.30.) We find that the Phantom Crossing DGP model is more compatible with the observations than the original DGP model or the DGP model developed by Dvali and Turner. Our model can realize late-time acceleration of the universe, similar to that of ΛCDM model, without dark energy due to the effect of DGP gravity. In our model, the crossing of the phantom divide occurs at a redshift of z ~ 0.2.
机译:我们研究了幻影穿越DGP模型的观测约束。我们证明,幻影鸿沟的跨越不会发生在原始Dvali-Gabadadze-Porrati(DGP)模型或Dvali和Turner开发的DGP模型的框架内。通过在额外维度方案的框架中扩展其模型,我们研究了实现幻影鸿沟的模型。我们调查了从Ia型超新星,宇宙微波背景各向异性和重子声振荡的最新观测数据获得的宇宙学约束。对于幻影交叉DGP模型,具有1σ(68%)误差的参数的最佳拟合值为Ω_m,0 = 0.27〜(+0.02)_(-0.02),β= 0.54〜(+0.24)_(-0.30 。)我们发现,幻影穿越DGP模型与原始DGP模型或Dvali和Turner开发的DGP模型相比,与观测值更兼容。我们的模型可以实现宇宙的后期加速,类似于ΛCDM模型,而没有由于DGP引力的影响而产生的暗能量。在我们的模型中,幻影鸿沟发生在z〜0.2的红移处。

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