An analysis of constraints on relativistic species from primordial nucleosynthesis and the cosmic microwave background
arXiv:1112.2683
Abstract
We present constraints on the number of relativistic species from a joint analysis of cosmic microwave background (CMB) fluctuations and light element abundances (helium and deuterium) compared to big bang nucleosynthesis (BBN) predictions. Our BBN calculations include updates of nuclear rates in light of recent experimental and theoretical information, with the most significant change occuring for the d(p,gamma)^3He cross section. We calculate a likelihood function for BBN theory and observations that accounts for both observational errors and nuclear rate uncertainties and can be easily embedded in cosmological parameter fitting. We then demonstrate that CMB and BBN are in good agreement, suggesting that the number of relativistic species did not change between the time of BBN and the time of recombination. The level of agreement between BBN and CMB, as well as the agreement with the standard model of particle physics, depends somewhat on systematic differences among determinations of the primordial helium abundance. We demonstrate that interesting constraints can be derived combining only CMB and D/H observations with BBN theory, suggesting that an improved D/H constraint would be an extremely valuable probe of cosmology.
11 pages, 3 figures, submitted to Phys. Rev. D
Cited by in corpus (24)
- Planck 2015 results. XIII. Cosmological parameters
- Big-Bang Nucleosynthesis After Planck
- The Phenomenology of Right Handed Neutrinos
- The BAO+BBN take on the Hubble tension
- A new, precise measurement of the primordial abundance of Deuterium
- Exploring Cosmic Origins with CORE: Cosmological Parameters
- Probing Physics Beyond the Standard Model: Limits from BBN and the CMB Independently and Combined
- Frontiers in Nuclear Astrophysics
- Observational Constraints on Secret Neutrino Interactions from Big Bang Nucleosynthesis
- Asymmetric Dark Matter and Dark Radiation
- A robust deuterium abundance; Re-measurement of the z=3.256 absorption system towards the quasar PKS1937-1009
- Unveiling secret interactions among sterile neutrinos with big-bang nucleosynthesis
- Tests of the CMB temperature-redshift relation, CMB spectral distortions and why adiabatic photon production is hard
- Dark Radiation candidates after Planck
- Light Higgsino from Axion Dark Radiation
- What is half a neutrino? Reviewing cosmological constraints on neutrinos and dark radiation
- Dark Radiation Confronting LHC in Z' Models
- Probing neutrino physics with a self-consistent treatment of the weak decoupling, nucleosynthesis, and photon decoupling epochs
- Dark Radiation and Decaying Matter
- Reduced modified Chaplygin gas cosmology
- Dark energy from dark radiation in strongly coupled cosmologies with no fine tuning
- Limits on Brane-World and Particle Dark Radiation from Big Bang Nucleosynthesis and the CMB
- Electromagnetic reactions on light nuclei
- BBN-simple: How to Bake a Universe-Sized Cake