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Low-redshift effects of local structure on the Hubble parameter in presence of a cosmological constant

机译:在宇宙常数存在下,局部结构对哈勃参数的低射频效应

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In order to estimate the effects of a local structure on the Hubble parameter we calculate the low-redshift expansion for H(z) and (frac{delta H}{H}) for an observer at the center of a spherically symmetric matter distribution in the presence of a cosmological constant. We then test the accuracy of the formulas comparing them with fully relativistic non-perturbative numerical calculations for different cases for the density profile. The low-redshift expansion we obtain gives results more precise than perturbation theory since it is based on the use of an exact solution of Einstein’s field equations. For larger density contrasts the low-redshift formulas accuracy improves respect to the perturbation theory accuracy because the latter is based on the assumption of a small density contrast, while the former does not rely on such an assumption. The formulas can be used to take into account the effects on the Hubble expansion parameter due to the monopole component of the local structure. If the H(z) observations will show deviations from the (Lambda CDM) prediction compatible with the formulas we have derived, this could be considered an independent evidence of the existence of a local inhomogeneity, and the formulas could be used to determine the characteristics of this local structure.
机译:为了估计局部结构对Hubble参数的影响,我们计算用于球体对称物质分布中心的观察者的H(z)和(FRAC {Delta H}})的低红移扩展存在宇宙常数。然后,我们测试与密度分布的不同情况的完全相同的非扰动数值比较的公式的准确性。我们获得的低红移扩展提供了比扰动理论更精确的结果,因为它基于使用Einstein的现场方程的精确解决方案。对于较大的密度对比,低射频式精度提高了扰动理论精度的尊重,因为后者基于小密度对比的假设,而前者不依赖于这种假设。由于局部结构的单极组分,可以使用公式来考虑对霍布布膨胀参数的影响。如果H(Z)观察结果将显示与我们得出的公式兼容的(Lambda CDM)预测的偏差,这可以被认为是存在局部不均匀性的独立证据,并且可以使用公式来确定特征这个地方结构。

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