Maeder, A. et al. In addition to the 6 parameters of the standard ΛCDM model, we also simultaneously vary the dark energy equation of state, the neutrino mass, the neutrino effective number, the running of the spectral index and the lensing amplitude AL. Planck’2018’results.’VI.’Cosmological’parameters’ Planck Collaboration: Cosmological parameters Table4.
VI. From Baryon Acoustic Oscillation measurements with Sloan Digital Sky Survey SDSS DR14 galaxies, and the acoustic horizon angle measured by the Planck Collaboration, we obtain Ωm=0.2724±0.0047, and h+0.020⋅∑mv=0.7038±0.0060, assuming flat space and a cosmological constant. We present cosmological parameter results from the final full-mission Planck measurements of the CMB anisotropies.
This paper presents the first cosmological results based on Planck measurements of the cosmic microwave background (CMB) temperature and lensing-potential power spectra.
Note that we quote 95% limits here. AUTHORS: Jody A. Geiger cosmological model, with many of the key cosmological parameters determined to one or two significant figure accuracy. We present new constraints on extended cosmological scenarios using the recent data from the Planck 2018 Legacy release. Particularly prominent are measurements of cosmic microwave background (CMB) anisotropies, with the highest precision observations being those of the Planck Satellite [1,2] which supersede the iconic WMAP results [3,4]. Cosmological Parameters, arXiv:1807.06209. has been cited by the following article: TITLE: Measurement Quantization Describes History of Universe—Quantum Inflation, Transition to Expansion, CMB Power Spectrum. Astrophysical and Dark Matter Interpretations of Extended Gamma-Ray Emissio We find that the Planck spectra at high multipoles (ℓ ≳ 40) are extremely well described by the standard spatially-flat six-parameter ΛCDM cosmology with a power-law spectrum of adiabatic scalar perturbations. Constraintson1-parameterextensionstothebase-⇤CDMmodelforcombinationsof Planck powerspectra, Planck lensing, and BAO (equivalent results using the CamSpec likelihood are given in Table A.2). (2018) Planck 2018 Results. Abazajian, K.N.. Astrophysical and Dark Matter Interpretations of Extended Gamma-Ray Emission from the.
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