Cosmic microwave background anisotropies in the timescape cosmology

Type of content
Journal Article
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Publisher
University of Canterbury. Physics and Astronomy
Journal Title
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Volume Title
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Date
2014
Authors
Nazer, M.A.
Wiltshire, D.L.
Abstract

We analyze the spectrum of cosmic microwave background (CMB) anisotropies in the timescape cosmology: a potentially viable alternative to homogeneous isotropic cosmologies without dark energy. We exploit the fact that the timescape cosmology is extremely close to the standard cosmology at early epochs to adapt existing numerical codes to produce CMB anisotropy spectra, and to match these as closely as possible to the timescape expansion history. A variety of matching methods are studied and compared. We perform Markov chain Monte Carlo analyses on the parameter space, and fit CMB multipoles 50 ≤ ℓ ≤ 2500 to the Planck satellite data. Parameter fits include a dressed Hubble constant, H0 = 61.0 km sec−1Mpc−1 (±1.3% stat) (±8% sys), and a present void volume fraction fv0 = 0.627 (±2.3% stat) (±13% sys). We find best fit likelihoods which are comparable to that of the best fit CDM cosmology in the same multipole range. In contrast to earlier results, the parameter constraints afforded by this analysis no longer admit the possibility of a solution to the primordial lithium abundance anomaly. This issue is related to a strong constraint between the ratio of baryonic to nonbaryonic dark matter and the ratio of heights of the second and third acoustic peaks, which cannot be changed as long as the standard cosmology is assumed up to the surface of last scattering. These conclusions may change if backreaction terms are also included in the radiation–dominated primordial plasma

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Citation
Nazer, M.A., Wiltshire, D.L. (2014) Cosmic microwave background anisotropies in the timescape cosmology. Physical Review D, 91(6), pp. 063519 (28 pp).
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Ngā upoko tukutuku/Māori subject headings
ANZSRC fields of research
Fields of Research::51 - Physical sciences::5101 - Astronomical sciences::510103 - Cosmology and extragalactic astronomy
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