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Constraining viscous dark energy models with the latest cosmological data

机译:使用最新的宇宙学数据约束粘性暗能量模型

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Based on the assumption that the dark energy possessing bulk viscosity is homogeneously and isotropically permeated in the universe, we propose three new viscous dark energy (VDE) models to characterize the accelerating universe. By constraining these three models with the latest cosmological observations, we find that they just deviate very slightly from the standard cosmological model and can alleviate effectively the current (H_0) tension between the local observation by the Hubble Space Telescope and the global measurement by the Planck Satellite. Interestingly, we conclude that a spatially flat universe in our VDE model with cosmic curvature is still supported by current data, and the scale invariant primordial power spectrum is strongly excluded at least at the (5.5sigma ) confidence level in the three VDE models as the Planck result. We also give the (95%) upper limits of the typical bulk viscosity parameter (eta ) in the three VDE scenarios.
机译:基于具有整体粘度的暗能量均匀且各向同性地渗透到宇宙的假设,我们提出了三种新的粘性暗能量(VDE)模型来表征加速宇宙。通过将这三个模型与最新的宇宙学观测值进行约束,我们发现它们与标准宇宙学模型之间的偏差很小,可以有效地缓解哈勃太空望远镜在局部观测与普朗克全球测量之间的当前(H_0)张力。卫星。有趣的是,我们得出的结论是,当前数据仍支持我们的VDE模型中具有宇宙曲率的空间平坦宇宙,并且至少在这三个VDE模型中的(5.5sigma)置信度上强烈排除了尺度不变的原始功率谱,因为普朗克结果。我们还给出了三种VDE方案中典型体积粘度参数(eta)的上限(95%)。

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