Virtual states of light non-Borromean halo nuclei
arXiv:nucl-th/9912051 · doi:10.1103/PhysRevC.61.051301
Abstract
It is shown that the three-body non-Borromean halo nuclei like ^{12}Be, ^{18}C, ^{20}C have p-wave virtual states with energy of about 1.6 times the corresponding neutron-core binding energy. We use a renormalizable model that guarantees the general validity of our results in the context of short range interactions.
2 eps-figures
References in corpus (1)
Cited by in corpus (7)
- Universality in Few-body Systems with Large Scattering Length
- Effective Field Theory for Halo Nuclei: Shallow p-Wave States
- Scaling limit of virtual states of triatomic systems
- Trajectory of neutronneutron excited three-body state
- A Model Study of Discrete Scale Invariance and Long-Range Interactions
- Nucleon-nucleon scattering within a multiple subtractive renormalization approach
- Origin of three-body resonances