English

Novel Weak Decays in Doubly Strange Systems

Nuclear Theory 2009-11-07 v1

Abstract

The strangeness-changing (ΔS=1\Delta S = 1) weak baryon-baryon interaction is studied through the nonmesonic weak decay of double-Λ\Lambda hypernuclei. Besides the usual nucleon-induced decay ΛNNN\Lambda N \to N N we discuss novel hyperon-induced decay modes ΛΛΛN\Lambda \Lambda \to \Lambda N and ΛΛΣN\Lambda \Lambda \to \Sigma N. These reactions provide unique access to the exotic ΛΛ\Lambda \LambdaK and ΛΣ\Lambda \SigmaK vertices which place new constraints on Chiral Pertubation Theory (χ\chiPT) in the weak SU(3) sector. Within a meson-exchange framework, we use the pseudoscalar π,η,K\pi,\eta,K octet for the long-range part while parametrizing the short-range part through the vector mesons ρ,ω,K\rho, \omega, K^*. Realistic baryon-baryon forces for the S=0,1S=0,-1 and -2 sectors account for the strong interaction in the initial and final states. For ΛΛ6^6_{\Lambda \Lambda}He the new hyperon-induced decay modes account for up to 4% of the total nonmesonic decay rate. Predictions are made for all possible nonmesonic decay modes.

Keywords

Cite

@article{arxiv.nucl-th/0106054,
  title  = {Novel Weak Decays in Doubly Strange Systems},
  author = {A. Parreno and A. Ramos and C. Bennhold},
  journal= {arXiv preprint arXiv:nucl-th/0106054},
  year   = {2009}
}

Comments

19 pages, 2 ps figures, 9 tables

R2 v1 2026-07-22T18:25:38.015Z