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Implications of an extended dark energy cosmology with massive neutrinos for cosmological tensions

机译:扩展暗能宇宙与宇宙张力的大型中微子的影响

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We perform a comprehensive analysis of the most common early- and late-universe solutions to the H0, Ly-α, and S8 discrepancies. When considered on their own, massive neutrinos provide a natural solution to the S8 discrepancy at the expense of increasing the H_0 tension. If all extensions are considered simultaneously, the best-fit solution has a neutrino mass sum of ~0.4 eV, a dark energy equation of state close to that of a cosmological constant, and no additional relativistic degrees of freedom (d.o.f). However, the H_0 tension, while weakened, remains unresolved. Motivated by this result, we perform a nonparametric reconstruction of the evolution of the dark energy fluid density (allowing for negative energy densities), together with massive neutrinos.When all data sets are included, there exists a residual ~1.9σ tension with H_0. If this residual tension remains in the future, it will indicate that it is not possible to solve the H_0 tension solely with a modification of the late-universe dynamics within standard general relativity. However, we do find that it is possible to resolve the tension if either galaxy baryon acoustic oscillation (BAO) or joint lightcurve analysis supernovae data are omitted. We find that negative dark energy densities are favored near redshift z ~ 2.35 when including the Ly-α BAO measurement (at ~2σ). This behavior may point to a negative curvature, but it is most likely indicative of systematics or at least an underestimated covariance matrix. Quite remarkably, we find that in the extended cosmologies considered in this work, the neutrino mass sum is always close to 0.4 eV regardless of the choice of external data sets, as long as the H_0 tension is solved or significantly decreased.
机译:我们对H0,LY-α和S8差异的最常见的早期和宇宙解决方案进行了全面的分析。当他们自己考虑时,巨大的中微子为S8差异提供自然解决方案,以牺牲H_0张力增加。如果同时考虑所有延伸,则最佳拟合溶液具有〜0.4eV的中微子质量和,状态的暗能方程接近宇宙常数的暗区,并且没有额外的相对论自由度(D.O.f)。然而,H_0紧张局势在削弱时仍未解决。通过这种结果,我们对暗能量流体密度(允许负能密度)的进化进行非参数重建,以及大量中微子。当包括所有数据集时,使用H_0存在残留〜1.9σ张力。如果未来仍然存在这种剩余张力,则表示不可能仅通过在标准一般相对性中的后期宇宙动态的修改来解决H_0张力。然而,我们确实发现如果省略了Galaxy Baryon声学振荡(BAO)或联合光电分析超新星数据,则可以解决张力。当包括LY-αBAO测量(AT〜2σ)时,我们发现负暗能量密度在Redshift Z〜2.35附近受到青睐。这种行为可能指向负曲率,但是它最有可能指示系统学或至少低估的协方差矩阵。非常值得注意地,我们发现,在考虑在这项工作中考虑的扩展宇宙中,无论外部数据集的选择如何,中微子质量总和总是接近0.4eV,只要解决H_0张力或显着降低。

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