arXiv · 2305.16865
Exploring the Growth Index $\gamma_L$: Insights from Different CMB Dataset Combinations and Approaches
Abstract
In this study we investigate the growth index $\gamma_L$, which characterizes the growth of linear matter perturbations, while analysing different cosmological datasets. We compare the approaches implemented by two different patches of the cosmological solver CAMB: MGCAMB and CAMB_GammaPrime_Growth. In our analysis we uncover a deviation of the growth index from its expected $\Lambda$CDM value of $0.55$ when utilizing the Planck dataset, both in the MGCAMB case and in the CAMB_GammaPrime_Growth case, but in opposite directions. This deviation is accompanied by a change in the direction of correlations with derived cosmological parameters. However, the incorporation of CMB lensing data helps reconcile $\gamma_L$ with its $\Lambda$CDM value in both cases. Conversely, the alternative ground-based telescopes ACT and SPT consistently yield growth index values in agreement with $\gamma_L=0.55$. We conclude that the presence of the A$_{\mathrm{lens}}$ problem in the Planck dataset contributes to the observed deviations, underscoring the importance of additional datasets in resolving these discrepancies.
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Enrico Specogna, Eleonora Di Valentino, Jackson Levi Said, Nhat-Minh Nguyen. 2023-05-26. Exploring the Growth Index $\gamma_L$: Insights from Different CMB Dataset Combinations and Approaches. https://doi.org/10.1103/physrevd.109.043528
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