Nucleosynthesis in the Presence of Primordial Isocurvature Baryon Fluctuations
نویسندگان
چکیده
We study big bang nucleosynthesis in the presence of large mass-scale, non-linear entropy fluctuations. Overdense regions, with masses above the local baryon-Jeans mass, are expected to collapse and form condensed objects. Surviving nucleosynthesis products therefore tend to originate from underdense regions. We compute expected surviving light element (H, He, He, Li) abundance yields for a variety of stochastic fluctuation spectra. In general, we find that spectra with significant power in fluctuations on length scales below that of the local baryon Jeans mass produce nucleosynthesis yields which are in conflict with observationally inferred primordial abundances. However, when this small scale structure is absent or suppressed, and the collapse efficiency of overdense regions is high, there exists a range of fluctuation spectral characteristics which meet all primordial abundance constraints. In such models abundance constraints can be met even when the pre-collapse baryonic fraction of the closure density is Ωb ≈ 0.2h (h is the Hubble parameter in units of 100 km sMpc). Nucleosynthesis in these models is characterized by high H/H and low He mass fraction relative to a homogeneous big bang at a given value of Ωbh . A potentially observable signature of these models is the production of intrinsic primordial abundance variations on baryon mass-scales up to 1010M⊙ − 1012M⊙. Subject headings: cosmology: theory early universe theory nucleosynthesis, abundances theory large scale structure: general
منابع مشابه
Stochastic Isocurvature Baryon Fluctuations, Baryon Diffusion, and Primordial Nucleosynthesis
We examine effects on primordial nucleosynthesis from a truly random spatial distribution in the baryon-to-photon ratio (η). We generate stochastic fluctuation spectra characterized by different spectral indices and root-mean-square fluctuation amplitudes. For the first time we explicitly calculate the effects of baryon diffusion on the nucleosynthesis yields of such stochastic fluctuations. We...
متن کاملNon-Gaussianity and Baryonic Isocurvature Fluctuations in the Curvaton Scenario
We discuss non-Gaussianity and baryonic isocurvature fluctuations in the curvaton scenario, assuming that the baryon asymmetry of the universe originates only from the decay products of the inflaton. When large non-Gaussianity is realized in such a scenario, non-vanishing baryonic isocurvature fluctuations can also be generated unless the baryogenesis occurs after the decay of the curvaton. We ...
متن کاملUniversal Lepton Asymmetry: New Constraints from the Cosmic Microwave Background and Primordial Nucleosynthesis
We study the primordial nucleosynthesis and cosmic age in the presence of a net lepton asymmetry as well as baryon asymmetry. We explore a previously unnoted region of the parameter space in which very large baryon densities 0.1 ≤ Ωb ≤ 1 can be accommodated within the light-element constraints from primordial nucleosynthesis. This parameter space consists of νμ and ντ degeneracies with a small ...
متن کاملLarge Scale Baryon Isocurvature Inhomogeneities
Big bang nucleosynthesis constraints on baryon isocurvature perturbations are determined. A simple model ignoring the effects of the scale of the perturbations is first reviewed. This model is then extended to test the claim that large amplitude perturbations will collapse, forming compact objects and preventing their baryons from contributing to the observed baryon density. It is found that ba...
متن کاملCompensated isocurvature perturbations in the curvaton model
Primordial fluctuations in the relative number densities of particles, or isocurvature perturbations, are generally well constrained by cosmic microwave background (CMB) data. A less probed mode is the compensated isocurvature perturbation (CIP), a fluctuation in the relative number densities of cold dark matter and baryons. In the curvaton model, a sub-dominant field during inflation later set...
متن کامل