Cosmological constraints in the presence of ionizing and resonance radiation at recombination
arXiv:astro-ph/0701224 · doi:10.1103/PhysRevD.75.063505
Abstract
With the recent measurement of full sky cosmic microwave background polarization from WMAP, key cosmological degeneracies have been broken, allowing tighter constraints to be placed on cosmological parameters inferred assuming a standard recombination scenario. Here we consider the effect on cosmological constraints if additional ionizing and resonance radiation sources are present at recombination. We find that the new CMB data significantly improve the constraints on the additional radiation sources, with and at 95% c.l. for resonance and ionizing sources respectively. Including the generalized recombination scenario, however, we find that the constraints on the scalar spectral index are weakened to , with the case now well inside the 95% c.l.. The relaxation of constraints on tensor modes, scale invariance, dark energy and neutrino masses are also discussed.
6 Pages, 7 Figures
References in corpus (8)
- Cosmological parameters from combining the Lyman-alpha forest with CMB, galaxy clustering and SN constraints
- Inflation model constraints from the Wilkinson Microwave Anisotropy Probe three-year data
- Impact of dark matter decays and annihilations on reionization
- A Bayesian model selection analysis of WMAP3
- Constraining Isocurvature Initial Conditions with WMAP 3-year data
- The impacts of dark matter particle annihilation on recombination and the anisotropies of the cosmic microwave background
- Inflation models after WMAP year three
- Model selection forecasts for the spectral index from the Planck satellite
Cited by in corpus (10)
- Effect of Primordial Black Holes on the Cosmic Microwave Background and Cosmological Parameter Estimates
- Updated CMB constraints on Dark Matter annihilation cross-sections
- Contraints on radiative dark-matter decay from the cosmic microwave background
- Secondary anisotropies of the CMB
- Is there a need and another way to measure the Cosmic Microwave Background temperature more accurately?
- Instability of reconstruction of the low CMB multipoles
- Delayed Recombination and Cosmic Parameters
- Delayed Recombination and Standard Rulers
- The Accelerated Recombination, and the ACBAR and WMAP data
- Probing the last scattering surface through the recent and future CMB observations