Testing the Friedmann equation: The expansion of the universe during big-bang nucleosynthesis
- 27 February 2002
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review D
- Vol. 65 (6) , 063507
- https://doi.org/10.1103/physrevd.65.063507
Abstract
In conventional general relativity, the expansion rate H of a Robertson-Walker universe is related to the energy density by the Friedmann equation. Aside from the present day, the only epoch at which we can constrain the expansion history in a model-independent way is during big-bang nucleosynthesis (BBN). We consider a simple two-parameter characterization of the behavior of H during BBN and derive constraints on this parameter space, finding that the allowed region of parameter space is essentially one dimensional. We also study the effects of a large neutrino asymmetry within this framework. Our results provide a simple way to compare an alternative cosmology to the observational requirement of matching the primordial abundances of the light elements.Keywords
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This publication has 32 references indexed in Scilit:
- Cosmological Implications of the MAXIMA-1 High-Resolution Cosmic Microwave Background Anisotropy MeasurementThe Astrophysical Journal, 2001
- Mass Density Profiles of Low Surface Brightness GalaxiesThe Astrophysical Journal, 2001
- Big Bang Nucleosynthesis Predictions for Precision CosmologyThe Astrophysical Journal, 2001
- A measurement of the cosmological mass density from clustering in the 2dF Galaxy Redshift SurveyNature, 2001
- Brane cosmological evolution in a bulk with cosmological constantPhysics Letters B, 2000
- Non-conventional cosmology from a brane universeNuclear Physics B, 2000
- Dynamics of anti-de Sitter domain wallsJournal of High Energy Physics, 1999
- Cosmological Expansion in the Presence of an Extra DimensionPhysical Review Letters, 1999
- Cosmology of one extra dimension with localized gravityPhysics Letters B, 1999
- Measurements of Ω and Λ from 42 High‐Redshift SupernovaeThe Astrophysical Journal, 1999