Nucleosynthesis Constraints on a Massive Gravitino in Neutralino Dark Matter Scenarios
Richard H. Cyburt, John Ellis, Brian D. Fields, Feng Luo, Keith A., Olive, and Vassilis C. Spanos

TL;DR
This paper investigates how decaying massive gravitinos affect primordial element abundances during Big Bang nucleosynthesis, providing new computational tools and constraints on gravitino properties within supersymmetric models.
Contribution
It introduces a new suite of codes including PYTHIA-based shower evolution and analytical hadron propagation models to evaluate gravitino decay effects on BBN.
Findings
Derived upper limits on gravitino primordial abundance for various masses.
Found no solution to the Li7 problem within the CMSSM for small gravitino masses.
Established constraints on gravitino mass and abundance consistent with observed light-element abundances.
Abstract
The decays of massive gravitinos into neutralino dark matter particles and Standard Model secondaries during or after Big-Bang nucleosynthesis (BBN) may alter the primordial light-element abundances. We present here details of a new suite of codes for evaluating such effects, including a new treatment based on PYTHIA of the evolution of showers induced by hadronic decays of massive, unstable particles such as a gravitino. We also develop an analytical treatment of non-thermal hadron propagation in the early universe, and use this to derive analytical estimates for light-element production and in turn on decaying particle lifetimes and abundances. We then consider specifically the case of an unstable massive gravitino within the constrained minimal supersymmetric extension of the Standard Model (CMSSM). We present upper limits on its possible primordial abundance before decay for…
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