A joint analysis of Planck and BICEP2 B modes including dust polarization uncertainty
arXiv:1405.5857 · doi:10.1088/1475-7516/2014/10/035
Abstract
We analyze BICEP2 and Planck data using a model that includes CMB lensing, gravity waves, and polarized dust. Planck dust polarization maps have highlighted the difficulty of estimating the dust polarization in low intensity regions, suggesting that the polarization fractions have considerable uncertainties and may be significantly higher than previous predictions. In this paper, we start by assuming nothing about the dust polarization except for the power spectrum shape, which we take to be . The resulting joint BICEP2+Planck analysis favors solutions without gravity waves, and the upper limit on the tensor-to-scalar ratio is , a slight improvement relative to the Planck analysis alone which gives (95% c.l.). The estimated amplitude of the dust polarization power spectrum agrees with expectations for this field based on both HI column density and Planck polarization measurements at 353 GHz in the BICEP2 field. Including the latter constraint in our analysis improves the limit further to , placing strong constraints on inflation (e.g., models with are excluded with 99.5% confidence). We address the cross-correlation analysis of BICEP2 at 150 GHz with BICEP1 at 100 GHz as a test of foreground contamination. We find that the null hypothesis of dust and lensing with gives relative to the hypothesis of no dust, so the frequency analysis does not strongly favor either model over the other. We also discuss how more accurate dust polarization maps may improve our constraints. If the dust polarization is measured perfectly, the limit can reach , but this degrades quickly to almost no improvement if the dust calibration error is 20% or larger or if the dust maps are not processed through the BICEP2 pipeline, inducing sampling variance noise. (Abridged.)
13 pages, 4 figures; submitted to JCAP; references added; minor changes to clarify methodology in response to referee report; expanded analysis (see new versions of Figs. 1 and 2) to include Planck measurement of dust polarization power in the BICEP2 field from http://arxiv.org/abs/1409.5738
References in corpus (2)
Cited by in corpus (74)
- A Joint Analysis of BICEP2/Keck Array and Planck Data
- Inflationary cosmology in modified gravity theories
- A Critical Review of Classical Bouncing Cosmologies
- Galaxies as simple dynamical systems: observational data disfavor dark matter and stochastic star formation
- Inflationary universe from perfect fluid and gravity and its comparison with observational data
- Higgs inflation from Standard Model criticality
- Higgs inflation with loop corrections in the Palatini formulation
- Improved Upper Limits on the Stochastic Gravitational-Wave Background from 2009-2010 LIGO and Virgo Data
- Blue-tilted Tensor Spectrum and Thermal History of the Universe
- Polarised radio filaments outside the Galactic plane
- Just enough inflation: power spectrum modifications at large scales
- Natural Inflation: Consistency with Cosmic Microwave Background Observations of Planck and BICEP2
- Sterile neutrinos help reconcile the observational results of primordial gravitational waves from Planck and BICEP2
- Unifying inflation and dark matter with the Peccei-Quinn field: observable axions and observable tensors
- Searching for stochastic gravitational waves using data from the two co-located LIGO Hanford detectors
- Two-Field Analysis of No-Scale Supergravity Inflation
- Coupled Boltzmann computation of mixed axion neutralino dark matter in the SUSY DFSZ axion model
- Generic Scalar Potentials for Inflation in Supergravity with a Single Chiral Superfield
- Using Large Scale Structure to test Multifield Inflation
- Reheating processes after Starobinsky inflation in old-minimal supergravity
- New confining force solution of QCD axion domain wall problem
- On reaching the adiabatic limit in multi-field inflation
- Inflation and Alternatives with Blue Tensor Spectra
- Clustering Fossils in Solid Inflation
- The Gravitational Wave Observatory Designer: Sensitivity Limits of Spaceborne Detectors
- Hyperbolic Inflation in the Light of Planck 2015 data
- Irruption of massive particle species during inflation
- Disentangling the - Duality
- The Primordial Inflation Polarization Explorer (PIPER)
- Gravity Waves From Non-Minimal Quadratic Inflation
- Criticality and Inflation of the Gauged B-L Model
- Pre-flight integration and characterization of the SPIDER balloon-borne telescope
- Sound speed of scalar field dark energy: weak effects and large uncertainties
- Generation of large-scale magnetic fields, non-Gaussianity, and primordial gravitational waves in inflationary cosmology
- Quantization of (1+1)-dimensional Hořava-Lifshitz theory of gravity
- Studying Inflation with Future Space-Based Gravitational Wave Detectors
- Dynamical Fractional Chaotic Inflation -- Dynamical Generation of a Fractional Power-Law Potential for Chaotic Inflation
- Oscillating modulation to B-mode polarization from varying propagating speed of primordial gravitational waves
- Effect of transitions in the Planck mass during inflation on primordial power spectra
- Statistical diagnostics to identify Galactic foregrounds in B-mode maps
- Topological inflation from the Starobinsky model in supergravity
- Constraint on the primordial gravitational waves from the joint analysis of BICEP2 and Planck HFI 353 GHz dust polarization data
- Observational Constraints on Varying-alpha Domain Walls
- Genus Topology and Cross-Correlation of BICEP2 and Planck 353 GHz B-Modes: Further Evidence Favoring Gravity Wave Detection
- The Chaotic Regime of D-Term Inflation
- Phenomenological approaches of inflation and their equivalence
- Inflation that runs naturally: Gravitational waves and suppression of power at large and small scales
- Dante's Waterfall
- Grand Unification and Subcritical Hybrid Inflation
- Inflation without quantum gravity
- Natural Milli-Charged Inflation
- No evidence for the blue-tilted power spectrum of relic gravitational waves
- Large tensor-to-scalar ratio and running of the scalar spectral index with Instep Inflation
- Lyth bound revisited
- Strong Dynamics and Inflation: a review
- Gauged M-flation After BICEP2
- A Strategy to Minimize Dust Foregrounds in B-mode Searches
- Large Scale Suppression of Scalar Power on a Spatial Condensation
- Negative Running of the Spectral Index, Hemispherical Asymmetry and the Consistency of Planck with Large
- Spinodal Instabilities and Super-Planckian Excursions in Natural Inflation
- Ambiguity in running spectral index with an extra light field during inflation
- Bound on largest from sub-Planckian excursions of inflaton
- The History of Inflation from Microwave Background Polarimetry and Laser Interferometry
- Running of scalar spectral index in multi-field inflation
- Modified natural inflation: A small single field model with a large tensor to scalar ratio
- B-modes and the sound speed of primordial fluctuations
- D-Flation
- Scalable background-limited polarization-sensitive detectors for mm-wave applications
- Updated reduced CMB data and constraints on cosmological parameters
- Beginning of Universe through large field hybrid inflation
- The Large Number Limit of Multifield Inflation
- Towards a realistic solution of the cosmological constant fine-tuning problem by Higgs inflation
- Polarization-dependent heating of the cosmic microwave background radiation by a magnetic field
- Fitting BICEP2 with defects, primordial gravitational waves and dust