Physics
Scientific paper
Feb 1991
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1991phrvd..43.1087k&link_type=abstract
Physical Review D (Particles and Fields), Volume 43, Issue 4, 15 February 1991, pp.1087-1105
Physics
2
Scientific paper
We have used a plane-symmetric numerical relativity and hydrodynamics code to study the effect of horizon-scale inhomogeneities in the energy density and spacetime curvature on primordial nucleosynthesis. 2H, 3He, and 7Li yields are chiefly determined by the local baryon-to-photon ratios during nucleosynthesis, whereas 4He depends on previous dynamical history which determines how many neutrons survive until nucleosynthesis. Strong (δρ/ρ~1) inhomogeneities are allowed by the observed abundances. Inhomogeneities usually raise both 4He and 2H but in some cases a nonadiabatic curvature inhomogeneity leads to a 4He yield below the standard-model result with the same average baryon-to-photon ratio.
Centrella Joan
Kurki-Suonio Hannu
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