Big-Bang Nucleosynthesis with Long-Lived Charged Slepton
arXiv:hep-ph/0703122 · doi:10.1016/j.physletb.2007.03.063
Abstract
We consider constraints on long-lived charged scalar leptons \tilde{l}^\pm in supersymmetric models, where gravitino is the lightest superparticle. We study the decay and hadronization processes of \tilde{l}^\pm. We also take into account the significant enhancement of Li6 production due to the formation of the bound-state (He4 \tilde{l}^-); for this purpose, we use the reaction rate given by the most recent calculation based on coupled-channel method.
9 pages, 3 figures
References in corpus (1)
Cited by in corpus (12)
- Strong Interactive Massive Particles from a Strong Coupled Theory
- Possible solution to the Li problem by the long lived stau
- The number density of a charged relic
- Solving the cosmic lithium problems with primordial late-decaying particles
- Probing the Reheating Temperature at Colliders and with Primordial Nucleosynthesis
- Entropy production by Q-ball decay for diluting long-lived charged particles
- Extremely Long-Lived Charged Massive Particles as A Probe for Reheating of the Universe
- Gravitino dark matter from increased thermal relic particles
- Flaxino dark matter and stau decay
- CBBN in the CMSSM
- Gravitino Dark Matter with Weak-Scale Right-Handed Sneutrino
- Gravitino Dark Matter and Light Element Adundances