English

Nonmesonic Weak Decay of $\Lambda$ Hypernuclei: The Three--Nucleon Induced Mode

Nuclear Theory 2017-10-11 v1

Abstract

The nonmesonic weak decay of Λ\Lambda hypernuclei is studied within a microscopic diagrammatic approach which is extended to include the three--nucleon induced mechanism. We adopt a nuclear matter formalism which, through the local density approximation, allows us to model finite hypernuclei, a one--meson--exchange weak transition potential and a Bonn nucleon--nucleon strong potential. One--, two-- and three--nucleon induced weak decay rates are predicted for Λ12^{12}_\LambdaC by including ground state correlations up to second order in the nucleon--nucleon potential and the recoil of the residual nucleus. Three--nucleon stimulated decays, ΛNNNnNNN\Lambda NNN\to nNNN (N=nN=n or pp), are considered here for the first time. The obtained decay rates compare well with the latest KEK and FINUDA data. The three--nucleon induced rate turns out to be dominated by nnpnnp-- and nppnpp--induced decays, it amounts to \sim 7\% of the total nonmesonic rate and it is 1/2\sim 1/2 of the neutron--induced decay rate. The reduction effect of the nuclear recoil is particularly relevant for the three--nucleon induced rates (\sim 15\%), less important for the two--nucleon induced rates (\sim 4\%) and negligible for the one--nucleon induced rates. Given the non--negligible size of the three--nucleon induced contribution and consequently its importance in the precise determination of the complete set of decay rates, new measurements and/or experimental analysis are encouraged.

Keywords

Cite

@article{arxiv.1701.03957,
  title  = {Nonmesonic Weak Decay of $\Lambda$ Hypernuclei: The Three--Nucleon Induced Mode},
  author = {E. Bauer and G. Garbarino and C. A. Rodríguez Peña},
  journal= {arXiv preprint arXiv:1701.03957},
  year   = {2017}
}

Comments

Accept in Phys. Lett. B

R2 v1 2026-06-22T17:50:18.825Z