Calculation of the He(in-flight ,) reaction for searching the deeply-bound state
arXiv:nucl-th/0703037 · doi:10.1016/j.physletb.2007.07.038
Abstract
The formation of a deeply-bound state by the He(in-flight ,) reaction is investigated theoretically in the distorted-wave impulse approximation using the Green's function method. The expected inclusive and semi-exclusive spectra at = 1.0 GeV/c and are calculated for the forthcoming J-PARC E15 experiment. We employ optical potentials between the and ``'' core-nucleus, and demonstrate systematically the dependence of the spectral shape on and , which are the real and imaginary parts of the strength for the optical potential, respectively. The necessary condition to observe a distinct peak of the bound state with , in the spectrum turns out to be that the value of is deeper than MeV and shallower than MeV, of which the strength parameters come up to recent theoretical predictions.
18 pages, 6 figures, REVTeX 4, accepted for publication in Physics Letters B
References in corpus (5)
- Faddeev calculation of a quasi-bound state
- nuclear bound states in a dynamical model
- In--Flight () Reactions for the Formation of Kaonic Atoms and Kaonic Nuclei in Green function method
- Super strong nuclear force caused by migrating Kbar mesons - Revival of the Heitler-London-Heisenberg scheme in kaonic nuclear clusters
- Kaon Absorption from Kaonic Atoms and Formation Spectra of Kaonic Nuclei
Cited by in corpus (8)
- Variational calculation of the ppK^- system based on chiral SU(3) dynamics
- quasi-bound state and the interaction: coupled-channel Faddeev calculations of the system
- Isospin Properties of (, ) Reactions for the Formation of Deeply-bound Antikaonic Nuclei
- Formation spectra of light kaonic nuclei by in-flight () reactions with chiral unitary amplitude
- ppK- bound states from Skyrmions
- Kaon-condensed hypernuclei as highly dense self-bound objects
- Formation of Deeply Bound Kaonic Atoms in (K^-,N) Reactions
- Structure, formation and decay of system by Faddeev-AGS calculations