Formation of Deeply Bound Kaonic Atoms in (K^-,N) Reactions
arXiv:0708.0459 · doi:10.1103/PhysRevC.76.045204
Abstract
We study theoretically the (K^-,N) reactions for the formation of the deeply bound kaonic atoms, which were predicted to be quasi--stable with narrow widths, using the Green function method. We consider various cases with different target nuclei and energies systematically and find the clear signals in the theoretical spectra for all cases considered in this article. The signals show very interesting structures, such as the instead of the resonance peak. We discuss the origins of the interesting structures and possibilities to get new information on the existence of the kaonic nuclei from the spectra of the atomic state formations.
11 pages, 9 figures
References in corpus (6)
- nuclear bound states in a dynamical model
- η- and η'-mesic nuclei and U_A(1) anomaly at finite density
- Chiral approach to antikaon s- and p-wave interactions in dense nuclear matter
- In--Flight () Reactions for the Formation of Kaonic Atoms and Kaonic Nuclei in Green function method
- Calculation of the He(in-flight ,) reaction for searching the deeply-bound state
- Kaon Absorption from Kaonic Atoms and Formation Spectra of Kaonic Nuclei