2020
DOI: 10.1051/0004-6361/201833910
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Planck2018 results

Abstract: We present cosmological parameter results from the final full-mission Planck measurements of the cosmic microwave background (CMB) anisotropies, combining information from the temperature and polarization maps and the lensing reconstruction. Compared to the 2015 results, improved measurements of large-scale polarization allow the reionization optical depth to be measured with higher precision, leading to significant gains in the precision of other correlated parameters. Improved modelling of the small-scale po… Show more

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Cited by 7,634 publications
(2,740 citation statements)
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References 380 publications
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“…GeV, where ρ c 1.1×10 −5 h 2 GeV/cm 3 is the critical energy density, s 0 2.9×10 3 cm −3 is the entropy density at present and Ω χ h 2 0.12 [61]. The gray-shaded areas are the regions where…”
Section: Jhep09(2020)142mentioning
confidence: 99%
“…GeV, where ρ c 1.1×10 −5 h 2 GeV/cm 3 is the critical energy density, s 0 2.9×10 3 cm −3 is the entropy density at present and Ω χ h 2 0.12 [61]. The gray-shaded areas are the regions where…”
Section: Jhep09(2020)142mentioning
confidence: 99%
“…In order to accurately bound the ULA power spectrum suppression scale, we marginalize over the slope n s ∈ [0.9, 0.995] and amplitude A s ∈ [1.2 × 10 −9 , 2.5 × 10 −9 ] of the primordial power spectrum, with a pivot scale k p = 2 Mpc −1 . Otherwise, we fix our cosmology to the baseline Planck 2018 parameters [49]: in particular, physical baryon energy density Ω b h 2 = 0.022126, physical dark matter energy density Ω c h 2 = 0.12068 and dimensionless Hubble parameter h = 0.6686.…”
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confidence: 99%
“…Emulation and inference -In order to be able to sample the parameter space in a computationally-feasible manner, we "emulate" the flux power spectrum (at the discrete simulation sample wavenumbers) as a function of model parameters . We map from m a to [α, β, γ] using the parametric model defined above and fix Ω m = 0.3209 [49]. We follow the Bayesian emulator optimization method we presented in Refs.…”
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confidence: 99%
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“…Current measurements by the Planck collaboration allow for an upper limit of ∆N eff ≈ 0.28 at 95% CL (TT, TE, EE+lowE+lensing+BAO). Including the present tension in the Hubble constant measurement, this value increases to ∆N eff ≈ 0.52 at 95 % CL (TT, TE, EE+lowE+lensing+BAO+R18) [53]. In the following, we dub the first value aggressive and the second one conservative.…”
Section: Constraints From N Effmentioning
confidence: 97%