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Title: Planck intermediate results: LI. Features in the cosmic microwave background temperature power spectrum and shifts in cosmological parameters

Journal Article · · Astronomy and Astrophysics
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The six parameters of the standard ΛCDM model have best-fit values derived from the Planck temperature power spectrum that are shifted somewhat from the best-fit values derived from WMAP data. These shifts are driven by features in the Planck temperature power spectrum at angular scales that had never before been measured to cosmic-variance level precision. We have investigated these shifts to determine whether they are within the range of expectation and to understand their origin in the data. Taking our parameter set to be the optical depth of the reionized intergalactic medium τ, the baryon density ωb, the matter density ωm, the angular size of the sound horizon θ, the spectral index of the primordial power spectrum, ns, and Ase− 2τ (where As is the amplitude of the primordial power spectrum), we have examined the change in best-fit values between a WMAP-like large angular-scale data set (with multipole moment < 800 in the Planck temperature power spectrum) and an all angular-scale data set ( < 2500Planck temperature power spectrum), each with a prior on τ of 0.07 ± 0.02. We find that the shifts, in units of the 1σ expected dispersion for each parameter, are { Δτ,ΔAse− 2τnsωmωbθ } = { −1.7,−2.2,1.2,−2.0,1.1,0.9 }, with a χ2 value of 8.0. We find that this χ2 value is exceeded in 15% of our simulated data sets, and that a parameter deviates by more than 2.2σ in 9% of simulated data sets, meaning that the shifts are not unusually large. Comparing < 800 instead to > 800, or splitting at a different multipole, yields similar results. We examined the < 800 model residuals in the > 800 power spectrum data and find that the features there that drive these shifts are a set of oscillations across a broad range of angular scales. Although they partly appear similar to the effects of enhanced gravitational lensing, the shifts in ΛCDM parameters that arise in response to these features correspond to model spectrum changes that are predominantly due to non-lensing effects; the only exception is τ, which, at fixed Ase− 2τ, affects the > 800 temperature power spectrum solely through the associated change in As and the impact of that on the lensing potential power spectrum. We also ask, “what is it about the power spectrum at < 800 that leads to somewhat different best-fit parameters than come from the full range?” We find that if we discard the data at < 30, where there is a roughly 2σ downward fluctuation in power relative to the model that best fits the full range, the < 800 best-fit parameters shift significantly towards the < 2500 best-fit parameters. In contrast, including < 30, this previously noted “low- deficit” drives ns up and impacts parameters correlated with ns, such as ωm and H0. As expected, the < 30 data have a much greater impact on the < 800 best fit than on the < 2500 best fit. So although the shifts are not very significant, we find that they can be understood through the combined effects of an oscillatory-like set of high- residuals and the deficit in low- power, excursions consistent with sample variance that happen to map onto changes in cosmological parameters. Finally, we examine agreement between PlanckTT data and two other CMB data sets, namely the Planck lensing reconstruction and the TT power spectrum measured by the South Pole Telescope, again finding a lack of convincing evidence of any significant deviations in parameters, suggesting that current CMB data sets give an internally consistent picture of the ΛCDM model.

Research Organization:
Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA (United States); University of California, Berkeley, CA (United States)
Sponsoring Organization:
USDOE Office of Science (SC), High Energy Physics (HEP)
Contributing Organization:
Planck Collaboration
Grant/Contract Number:
AC02-05CH11231; SC0017860
OSTI ID:
1525255
Alternate ID(s):
OSTI ID: 1593676; OSTI ID: 1594734
Journal Information:
Astronomy and Astrophysics, Vol. 607; ISSN 0004-6361
Publisher:
EDP SciencesCopyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 72 works
Citation information provided by
Web of Science

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Planck 2015 results. X. Diffuse component separation: Foreground maps text January 2015
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Planck 2015 results. XV. Gravitational lensing text January 2015
Planck 2015 results. IX. Diffuse component separation: CMB maps text January 2015
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Planck 2015 results. XI. CMB power spectra, likelihoods, and robustness of parameters text January 2015
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Quantifying discordance in the 2015 Planck CMB spectrum text January 2015
Planck intermediate results. XLVI. Reduction of large-scale systematic effects in HFI polarization maps and estimation of the reionization optical depth text January 2016
KiDS-450: Cosmological parameter constraints from tomographic weak gravitational lensing text January 2016
Cosmological parameters from CMB and other data: a Monte-Carlo approach text January 2002
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Cosmological discordances. III. More on measure properties, large-scale-structure constraints, the Hubble constant and Planck data journal December 2019
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Status of Neutrino Properties and Future Prospects—Cosmological and Astrophysical Constraints journal February 2018
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Elucidating ΛCDM: Impact of Baryon Acoustic Oscillation Measurements on the Hubble Constant Discrepancy journal January 2018
A Comparison of Maps and Power Spectra Determined from South Pole Telescope and Planck Data journal January 2018
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Assessing Consistency between WMAP 9 Year and Planck 2015 Temperature Power Spectra journal December 2018
Planck 2015 Constraints on the Non-flat XCDM Inflation Model journal December 2018
Quantifying the CMB Degeneracy between the Matter Density and Hubble Constant in Current Experiments journal January 2019
Sounds Discordant: Classical Distance Ladder and ΛCDM-based Determinations of the Cosmological Sound Horizon journal March 2019
Using the Tilted flat-ΛCDM and the Untilted Non-flat ΛCDM Inflation Models to Measure Cosmological Parameters from a Compilation of Observational Data journal September 2019
Analytic Calculation of Covariance between Cosmological Parameters from Correlated Data Sets, with an Application to SPTpol journal December 2019
Exploring cosmic origins with CORE: Survey requirements and mission design journal April 2018
The Simons Observatory: Science goals and forecasts text January 2019
Cosmic rays, gas and dust in nearby anticentre clouds: I. CO-to-H journal May 2017
Dust models compatible with Planck intensity and polarization data in translucent lines of sight journal February 2018
Dust spectrum and polarisation at 850 μ m in the massive IRDC G035.39-00.33 journal November 2018
Very Large Interstellar Grains as Evidenced by the Mid-Infrared Extinction journal September 2015
Exploring cosmic origins with CORE: B -mode component separation journal April 2018
The Python Sky Model: software for simulating the Galactic microwave sky journal May 2017
Optimistic estimation on probing primordial gravitational waves with CMB B-mode polarization journal November 2018
Fractal statistics in young star clusters: structural parameters and dynamical evolution journal October 2019
A case Against Spinning pahs as the Source of the Anomalous Microwave Emission journal August 2016
On Graphene in the Interstellar Medium journal November 2017
First Observation of the Submillimeter Polarization Spectrum in a Translucent Molecular Cloud journal April 2018
Developing the 3-point Correlation Function for the Turbulent Interstellar Medium journal July 2018
Optically Thick H i Does Not Dominate Dark Gas in the Local ISM journal July 2018
Determination of the Cosmic Infrared Background from COBE /FIRAS and Planck HFI Observations journal May 2019
On-sky Performance of the CLASS Q -band Telescope journal May 2019
Imaging the Thermal and Kinematic Sunyaev–Zel’dovich Effect Signals in a Sample of 10 Massive Galaxy Clusters: Constraints on Internal Velocity Structures and Bulk Velocities journal July 2019
Fermi -LAT γ -Ray Study of the Interstellar Medium and Cosmic Rays in the Chamaeleon Molecular Cloud Complex: A Look at the Dark Gas as Optically Thick H i journal October 2019
A Self-consistent Framework for Multiline Modeling in Line Intensity Mapping Experiments journal December 2019
A New Probe of Line-of-sight Magnetic Field Tangling journal April 2018
Insensitivity of The Distance Ladder Hubble Constant Determination to Cepheid Calibration Modeling Choices text January 2017
Measurements of the Temperature and E-Mode Polarization of the CMB from 500 Square Degrees of SPTpol Data text January 2017
Planck 2015 constraints on the non-flat XCDM inflation model text January 2017
Non-minimal gravitational reheating during kination text January 2018
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The Simons Observatory: Science goals and forecasts text January 2018
On the road to percent accuracy II: calibration of the non-linear matter power spectrum for arbitrary cosmologies text January 2019
The impact of baryonic physics and massive neutrinos on weak lensing peak statistics text January 2019
Cosmological discordances III: more on measure properties, Large-Scale-Structure constraints, the Hubble constant and Planck text January 2019
Non-minimal dark sector physics and cosmological tensions text January 2019

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