The cut-sky cosmic microwave background is not anomalous
arXiv:1004.2706 · doi:10.1103/PhysRevD.81.103008
Abstract
The observed angular correlation function of the cosmic microwave background has previously been reported to be anomalous, particularly when measured in regions of the sky uncontaminated by Galactic emission. Recent work by Efstathiou et al. presents a Bayesian comparison of isotropic theories, casting doubt on the significance of the purported anomaly. We extend this analysis to all anisotropic Gaussian theories with vanishing mean (<delta T> = 0), using the much wider class of models to confirm that the anomaly is not likely to point to new physics. On the other hand if there is any new physics to be gleaned, it results from low-l alignments which will be better quantified by a full-sky statistic. We also consider quadratic maximum likelihood power spectrum estimators that are constructed assuming isotropy. The underlying assumptions are therefore false if the ensemble is anisotropic. Nonetheless we demonstrate that, for theories compatible with the observed sky, these estimators (while no longer optimal) remain statistically superior to pseudo-C_l power spectrum estimators.
PRD in press. Extremely minor updates, mirroring typographical changes made in proof
References in corpus (6)
- The Uncorrelated Universe: Statistical Anisotropy and the Vanishing Angular Correlation Function in WMAP Years 1-3
- CMB multipole measurements in the presence of foregrounds
- Testable polarization predictions for models of CMB isotropy anomalies
- Fast and Efficient Template Fitting of Deterministic Anisotropic Cosmological Models Applied to WMAP Data
- Bianchi Model CMB Polarization and its Implications for CMB Anomalies
- Contamination cannot explain the lack of large-scale power in the cosmic microwave background radiation
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- Planck 2018 results. VII. Isotropy and Statistics of the CMB
- Planck 2015 results. XVI. Isotropy and statistics of the CMB
- CMB Anomalies after Planck
- Probing the anisotropic local universe and beyond with SNe Ia data
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- Constraints on a Bianchi type I spacetime extension of the standard CDM model
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- Lack of large-angle TT correlations persists in WMAP and Planck
- Estimating the large-scale angular power spectrum in the presence of systematics: a case study of Sloan Digital Sky Survey quasars
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- An analytic approach to perturbations from an initially anisotropic universe
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- Nearly Full-Sky Low-Multipole Cosmic Microwave Background Temperature Anisotropy: III. CMB Temperature Anomalies
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