Cosmological parameters derived from the final (PR4) Planck data release

Fuente: arXiv
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Main Authors: Tristram, M., Banday, A. J., Douspis, M., Garrido, X., Górski, K. M., Henrot-Versillé, S., Hergt, L. T., Ilić, S., Keskitalo, R., Lagache, G., Lawrence, C. R., Partridge, B., Scott, D.
Format: Preprint
Published: 2023
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author Tristram, M.
Banday, A. J.
Douspis, M.
Garrido, X.
Górski, K. M.
Henrot-Versillé, S.
Hergt, L. T.
Ilić, S.
Keskitalo, R.
Lagache, G.
Lawrence, C. R.
Partridge, B.
Scott, D.
author_facet Tristram, M.
Banday, A. J.
Douspis, M.
Garrido, X.
Górski, K. M.
Henrot-Versillé, S.
Hergt, L. T.
Ilić, S.
Keskitalo, R.
Lagache, G.
Lawrence, C. R.
Partridge, B.
Scott, D.
contents We present constraints on cosmological parameters using maps from the last Planck data release (PR4). In particular, we detail an upgraded version of the cosmic microwave background likelihood, HiLLiPoP, based on angular power spectra and relying on a physical modelling of the foreground residuals in the spectral domain. This new version of the likelihood retains a larger sky fraction (up to 75%) and uses an extended multipole range. Using this likelihood, along with low-l measurements from LoLLiPoP, we derive constraints on $Λ$CDM parameters that are in good agreement with previous Planck 2018 results, but with 10% to 20% smaller uncertainties. We demonstrate that the foregrounds can be accurately described in spectra domain with only negligible impact on $Λ$CDM parameters. We also derive constraints on single-parameter extensions to $Λ$CDM including $A_L$, $Ω_K$, $N_{eff}$, and $\sum m_ν$. Noteworthy results from this updated analysis include a lensing amplitude value of $A_L = 1.039 \pm 0.052$, which aligns more closely with theoretical expectations within the $Λ$CDM framework. Additionally, our curvature measurement, $Ω_K = -0.012 \pm 0.010$, now demonstrates complete consistency with a flat universe, and our measurement of $S_8$ is closer to the measurements derived from large-scale structure surveys (at the 1.6$σ$ level). We also add constraints from PR4 lensing, making the combination the most constraining data set that is currently available from Planck. Additionally we explore adding baryon acoustic oscillation data, which tightens limits on some particular extensions to the standard cosmology.
format Preprint
id arxiv_https___arxiv_org_abs_2309_10034
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Cosmological parameters derived from the final (PR4) Planck data release
Tristram, M.
Banday, A. J.
Douspis, M.
Garrido, X.
Górski, K. M.
Henrot-Versillé, S.
Hergt, L. T.
Ilić, S.
Keskitalo, R.
Lagache, G.
Lawrence, C. R.
Partridge, B.
Scott, D.
Cosmology and Nongalactic Astrophysics
We present constraints on cosmological parameters using maps from the last Planck data release (PR4). In particular, we detail an upgraded version of the cosmic microwave background likelihood, HiLLiPoP, based on angular power spectra and relying on a physical modelling of the foreground residuals in the spectral domain. This new version of the likelihood retains a larger sky fraction (up to 75%) and uses an extended multipole range. Using this likelihood, along with low-l measurements from LoLLiPoP, we derive constraints on $Λ$CDM parameters that are in good agreement with previous Planck 2018 results, but with 10% to 20% smaller uncertainties. We demonstrate that the foregrounds can be accurately described in spectra domain with only negligible impact on $Λ$CDM parameters. We also derive constraints on single-parameter extensions to $Λ$CDM including $A_L$, $Ω_K$, $N_{eff}$, and $\sum m_ν$. Noteworthy results from this updated analysis include a lensing amplitude value of $A_L = 1.039 \pm 0.052$, which aligns more closely with theoretical expectations within the $Λ$CDM framework. Additionally, our curvature measurement, $Ω_K = -0.012 \pm 0.010$, now demonstrates complete consistency with a flat universe, and our measurement of $S_8$ is closer to the measurements derived from large-scale structure surveys (at the 1.6$σ$ level). We also add constraints from PR4 lensing, making the combination the most constraining data set that is currently available from Planck. Additionally we explore adding baryon acoustic oscillation data, which tightens limits on some particular extensions to the standard cosmology.
title Cosmological parameters derived from the final (PR4) Planck data release
topic Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2309.10034