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How flat is our Universe really?

机译:我们的宇宙到底有多平坦?

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摘要

Distance measurement provides no constraints on curvature independent of assumptions about the dark energy, raising the question, how flat is our Universe if we make no such assumptions? Allowing for general evolution of the dark energy equation of state with 20 free parameters that are allowed to cross the phantom divide, w(z)=-1, we show that while it is indeed possible to match the first peak in the Cosmic Microwave Background with non-flat models and arbitrary Hubble constant, H_0, the full WMAP7 and supernova data alone imply -0.12<Ω_k<0.01 (σ). If we add an H_0 prior, this tightens significantly to Ω_k=0.002±0.009. These constitute the most conservative and model-independent constraints on curvature available today, and illustrate that the curvature-dynamics degeneracy is broken by current data, with a key role played by the Integrated Sachs Wolfe effect rather than the distance to the surface of last scattering. If one imposes a quintessence prior on the dark energy (-1≤w(z)≤1) then just the WMAP7 and supernova data alone force the Universe to near flatness: Ω_k=0.013±0.012. Finally, allowing for curvature, we find that all datasets are consistent with a Harrison-Zel'dovich spectral index, n_s=1, at 2σ, illustrating the interplay between early and late Universe constraints.
机译:距离测量不依赖于暗能量的假设而对曲率没有任何约束,这就提出了一个问题:如果不做出这样的假设,我们的宇宙将有多平坦?允许暗能量状态方程具有20个自由参数的一般演化,这些自由参数允许跨越幻影鸿沟w(z)=-1,我们证明了,尽管有可能匹配宇宙微波背景中的第一个峰对于非平坦模型和任意哈勃常数H_0,仅完整的WMAP7和超新星数据就意味着-0.12 <Ω_k<0.01(σ)。如果我们先添加H_0,则将其显着收紧至Ω_k= 0.002±0.009。这些构成了当今对曲率的最保守且与模型无关的约束,并说明了曲率动力学的简并性已被当前数据打破,其综合作用起着关键作用,而不是到最后散射表面的距离。如果对暗能量(-1≤w(z)≤1)施加典型的先验,则仅WMAP7和超新星数据就将宇宙逼近平坦度:Ω_k= 0.013±0.012。最后,考虑到曲率,我们发现所有数据集均与2σ处的Harrison-Zel'dovich光谱指数n_s = 1一致,说明了早期和晚期宇宙约束之间的相互作用。

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