English

Big Bad Nucleosynthesis: A Review

Astrophysics 2008-11-26 v1 High Energy Physics - Phenomenology

Abstract

Big Bang Nucleosynthesis represents perhaps the first, and still perhaps the most powerful particle-astrophysics connection. As such, it should provide an example for other work in this area. I discuss the current status of standard model BBN predictions and constraints, and then argue that the issue of observational systematic uncertainties is the key feature limiting our ability to constrain theory with observation. Nevertheless, several very important constraints are currently obtainable. For example, assuming maximal systematic uncertainties in 4^4He, D, and 7^7Li we find a conservative upper limit of ΩB0.16\Omega_B \le 0.16 in order for BBN predictions to agree with observations. Equally significant, we find that BBN predictions are inconsistent unless 4He^4He abundance by mass is greater than 23.9%23.9\%, or D +3^3He estimates are incorrect. By contrast, unless systematic uncertainties are taken into account, the quoted 2σ2\sigma observational upper limit on the primordial 4He^4He fraction is 23.8%23.8\%.

Keywords

Cite

@article{arxiv.astro-ph/9501101,
  title  = {Big Bad Nucleosynthesis: A Review},
  author = {Lawrence M. Krauss},
  journal= {arXiv preprint arXiv:astro-ph/9501101},
  year   = {2008}
}

Comments

uuencoded compressed postscript file. To appear in Nucl. Phys. B., Proceedings and Supplements. Based on invited lectures at Trends in Astroparticle Physics, Stockholm, Sweden Sept 1994 and From the Weak Scale to the Planck Scale, Warsaw, Poland Sept 1994

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