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arXiv:astro-ph/9408023·v3·Astrophysics

Big Bang Nucleosynthesis Constraints and Light Element Abundance Estimates

Lawrence M. Krauss🇺🇸 · Peter J. Kernan🇺🇸

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Abstract

To elucidate the significance of the effect of systematic uncertainties in light element abundance estimates on cosmological bounds derivable from Big Bang Nucleosynthesis (BBN) we present tables giving bounds on and as one changes the limits on primordial \he and Li. This allows us to derive new relations between these estimates and constraints on and . For example, only if the helium mass fraction, does Li (or D) presently play a role in placing an upper limit on the baryon density, and only if does He cease to play a role in bounding . All the elements combine together tend to give a stringent upper bound of on . We also find that must exceed .239 for consistency between theory and observation if D+He/H is less than . Updated nuclear reaction rates, an updated neutron half life, Monte Carlo techniques, and correlations between the predicted abundances are incorporated in our analysis. We also discuss the handling of systematic uncertainties in the context of statistical analyses of BBN predictions.

Comments: latex, 17 pages plus 1 fig (appended as separate uuencoded file) (UPDATED A FINAL TIME TO INCLUDE NEW DERIVED LIMIT ON HE AND ADDITIONAL REFERENCES)

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