English

The density- and isospin- dependent $\Delta$-formation cross section and its decay width

Nuclear Theory 2021-08-09 v1 Nuclear Experiment

Abstract

The energy-, density-, and isospin-dependent Δ\Delta-formation cross section σNπΔ\sigma_{N\pi \rightarrow \Delta}^* and Δ\Delta-decay width are calculated based on the relativistic BUU approach in which the effective mass splitting of nucleon and Δ\Delta baryons in isospin-asymmetric matter is considered by the inclusion of the δ\delta meson exchange in the effective Lagrangian density. With the density-dependent couplings for baryons of F. Hofmann et al., the σNπΔ\sigma_{N\pi \rightarrow \Delta}^* is decreased (increased) moderately with increasing density with (without) the consideration of the density dependent pion effective mass. Meanwhile, if the invariant mass of the system is not far from the Δ\Delta pole mass, the Δ\Delta-decay width is also weakly dependent on density. The mass splitting effect of differently charged nucleon and Δ\Delta baryons on σNπΔ\sigma_{N\pi \rightarrow \Delta}^* are found to be more obvious than that of pion mesons but much weaker than the mass splitting in the hard Δ\Delta production channel NNNΔNN\rightarrow N\Delta. Further, the largest mass-splitting influence is seen in the πpΔ0\pi^-p\rightarrow \Delta^0 and π+nΔ+\pi^+n\rightarrow \Delta^+ channels but not in the production of Δ\Delta^- and Δ++\Delta^{++} isobars.

Keywords

Cite

@article{arxiv.1712.02062,
  title  = {The density- and isospin- dependent $\Delta$-formation cross section and its decay width},
  author = {Qingfeng Li and Zhuxia Li},
  journal= {arXiv preprint arXiv:1712.02062},
  year   = {2021}
}

Comments

11 pages, 5 figures