Big bang nucleosynthesis in the presence of decaying relic neutral particles is examined in detail. All nonthermal processes important for the determination of light-element abundance yields of ²H, ³H, ³He, ⁴He, ⁶Li, and ⁷Li are coupled to the thermonuclear fusion reactions to obtain comparatively accurate results. Predicted light-element yields are compared to observationally inferred limits on primordial light-element abundances to infer constraints on the abundances and properties of relic decaying particles with decay times in the interval 0.01 secτX10¹² sec. Decaying particles are typically constrained at early times by ⁴He or ²H, at intermediate times by ⁶Li, and at large times by the ³He/²H ratio. Constraints are shown for a large number of hadronic branching ratios and decaying particle masses and may be applied to constrain the evolution of the early universe.
No takes yet. Share an insight, caveat, or question.
Karsten Jedamzik (2006) studied this question.
Synapse has enriched 2 closely related papers on similar clinical questions. Consider them for comparative context: