BBN For Pedestrians
arXiv:astro-ph/0406320 · doi:10.1088/1367-2630/6/1/117
Abstract
The simplest, `standard' model of Big Bang Nucleosynthesis (SBBN) assumes three light neutrinos (N_nu = 3) and no significant electron neutrino asymmetry, leaving only one adjustable parameter: the baryon to photon ratio eta. The primordial abundance of any one nuclide can, therefore, be used to measure the baryon abundance and the value derived from the observationally inferred primordial abundance of deuterium closely matches that from current, non-BBN data, primarily from the WMAP survey. However, using this same estimate there is a tension between the SBBN-predicted 4He and 7Li abundances and their current, observationally inferred primordial abundances, suggesting that N_nu may differ from the standard model value of three and/or that there may be a non-zero neutral lepton asymmetry (or, that systematic errors in the abundance determinations have been underestimated or overlooked). The differences are not large and the allowed ranges of the BBN parameters permitted by the data are quite small. Within these ranges, the BBN-predicted abundances of D, 3He, 4He, and 7Li are very smooth, monotonic functions of eta, N_nu, and the lepton asymmetry. It is possible to describe the dependencies of these abundances (or powers of them) upon the three parameters by simple, linear fits which, over their ranges of applicability, are accurate to a few percent or better. The fits presented here have not been maximized for their accuracy but, for their simplicity. To identify the ranges of applicability and relative accuracies, they are compared to detailed BBN calculations; their utility is illustrated with several examples. Given the tension within BBN, these fits should prove useful in facilitating studies of the viability of proposals for non-standard physics and cosmology, prior to undertaking detailed BBN calculations.
Submitted to a Focus Issue on Neutrino Physics in New Journal of Physics (www.njp.org)
Cited by in corpus (70)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- f(R) Theories Of Gravity
- Cosmology at Low Frequencies: The 21 cm Transition and the High-Redshift Universe
- Leptogenesis as the origin of matter
- Primordial Nucleosynthesis in the Precision Cosmology Era
- The Atacama Cosmology Telescope: Cosmological Parameters from the 2008 Power Spectra
- The Atacama Cosmology Telescope: Cosmological parameters from three seasons of data
- Primordial Nucleosynthesis: Successes And Challenges
- gravity and Cardassian-like expansion as one of its consequences
- Phase transitions in the early and the present Universe
- The primordial deuterium abundance of the most metal-poor damped Lyman-alpha system
- Viability of f(R) Theories with Additional Powers of Curvature
- Constraints on a Bianchi type I spacetime extension of the standard CDM model
- Lepton asymmetry and primordial nucleosynthesis in the era of precision cosmology
- Constraining The Early-Universe Baryon Density And Expansion Rate
- keV Sterile Neutrino Dark Matter from Singlet Scalar Decays: Basic Concepts and Subtle Features
- Constraining The Universal Lepton Asymmetry
- Short Baseline Neutrino Oscillations and a New Light Gauge Boson
- Effects of quantum fluctuations of metric on the universe
- Primordial Helium And the Cosmic Background Radiation
- Collider Signals of Baryogenesis and Dark Matter from Mesons: A Roadmap to Discovery
- Big Bang Nucleosynthesis and Entropy Evolution in Gravity
- Standard Cosmological Evolution in a Wide Range of f(R) Models
- Neutrino flavor transformation in the lepton-asymmetric universe
- The Cosmological Evolution of the Average Mass Per Baryon
- Are Light Sterile Neutrinos Preferred or Disfavored by Cosmology?
- Big Bang nucleosynthesis with a stiff fluid
- CP violation effects on the neutrino degeneracy parameters in the Early Universe
- Constraints on Tsallis Cosmology from Big Bang Nucleosynthesis and the Relic Abundance of Cold Dark Matter Particles
- Constraints on Neutrino Mass and Light Degrees of Freedom in Extended Cosmological Parameter Spaces
- Towards the robustness of the Affleck-Dine baryogenesis
- Neutrinos And Big Bang Nucleosynthesis
- Cosmological evidence for leptonic asymmetry after Planck
- Model-independent determination of the cosmic expansion rate. I. Application to type-Ia supernovae
- Primordial Big Bang Nucleosynthesis and Generalized Uncertainty Principle
- Anisotropic massive Brans-Dicke gravity extension of the standard CDM model
- Big Bang nucleosynthesis in scalar tensor gravity: the key problem of the Li abundance
- Lepton asymmetry, neutrino spectral distortions, and big bang nucleosynthesis
- Consequences of neutrino self interactions for weak decoupling and big bang nucleosynthesis
- Probing neutrino physics with a self-consistent treatment of the weak decoupling, nucleosynthesis, and photon decoupling epochs
- Neutrino number asymmetry and cosmological birefringence
- Baryogenesis via Particle-Antiparticle Oscillations
- BBN Constraints on Gravity
- The dynamics of scalar-tensor cosmology from RS two-brane model
- Lorentz invariance violation in the neutrino sector: a joint analysis from big bang nucleosynthesis and the cosmic microwave background
- Testing a Dilaton Gravity Model using Nucleosynthesis
- Big bang nucleosynthesis and early dark energy in light of the EMPRESS results and the tension
- Constraints on Lepton Asymmetry from Nucleosynthesis in a Linearly Coasting Cosmology
- Impact of thermal diffusion and other abundance anomalies on cosmological uses of galaxy clusters
- Non equilibrium dynamics of mixing, oscillations and equilibration: a model study
- Big Bang Nucleosynthesis Constraints on the Self-Gravity of Pressure
- Quadratic energy-momentum squared gravity: constraints from big bang nucleosynthesis
- Implications on Cosmology from Dirac Neutrino Magnetic Moments
- Effects of anisotropy in an anisotropic extension of CDM model
- Cosmology at high redshift -- a probe of fundamental physics
- Barrow Cosmology and Big-Bang Nucleosynthesis
- Big-Bang nucleosynthesis constraints on (dual) Kaniadakis cosmology
- Big Bang Nucleosynthesis constraints on the cosmological evolution in a Universe with a Weylian Boundary
- The new higher-order generalized uncertainty principle and primordial big bang nucleosynthesis
- BBN and the Primordial Abundances
- Primordial Nucleosynthesis After WMAP
- Constraints on Rényi Entropy through Primordial Big-Bang Nucleosynthesis and Baryogenesis
- Subdominant Dark Matter sterile neutrino resonant production in the light of Planck
- Big Bang Nucleosynthesis constraints on space-time noncommutativity
- Big Bang Nucleosynthesis constraints on gravity
- A new mechanism for generating particle number asymmetry through interactions
- Gravity from the Determinant of the Energy-Momentum: Astrophysical Implications
- Primordial Nucleosynthesis: A Cosmological Probe
- Constraining Early Dark Energy cosmological models with Big Bang Nucleosynthesis
- Constraining quantum fluctuations of spacetime foam from BBN