Nuclear Reaction Rates and Primordial $^6$Li
Abstract
We examine the possibility that Big Bang Nucleosynthesis (BBN) may produce non-trivial amounts of Li. If a primordial component of this isotope could be observed, it would provide a new fundamental test of Big-Bang cosmology, as well as new constraints on the baryon density of the universe. At present, however, theoretical predictions of the primordial Li abundance are extremely uncertain due to difficulties in both theoretical estimates and experimental determinations of the deuterium-plus-alpha radiative capture reaction cross-section. We also argue that present observational capabilities do not yet allow the detection of primeval Li in very metal-poor stars of the galactic halo. However, if the critical cross section is towards the upper end of its plausible range, then improvements in Li detection capabilities may allow the establishment of Li as another product of BBN. It is also noted that a primordial Li detection could help resolve current concerns about the extragalactic D/H determination.
Cite
@article{arxiv.astro-ph/9612197,
title = {Nuclear Reaction Rates and Primordial $^6$Li},
author = {Kenneth M. Nollett and Martin Lemoine and David N. Schramm},
journal= {arXiv preprint arXiv:astro-ph/9612197},
year = {2008}
}
Comments
10 pages, REVTeX, 5 PostScript figures with psfig. Submitted to Physical Review C