Nonlinear relativistic mean-field theory studies on He isotopes
arXiv:1401.3050 · doi:10.1088/1674-1137/38/12/124102
Abstract
The ground state properties of He isotopes are studied in the nonlinear relativistic mean-field (RMF) theory with force parameters NL-SH and TM2. The modified Glauber model as a gatekeeper is introduced to check the calculations. The investigation shows that the RMF theory provides a good description on the properties of He isotopes. The many-body space information of 4He + neutrons are obtained reliably. As a product, the calculation gives a strong evidence for neutron halo in 5He.
References in corpus (5)
- Complex coupled-cluster approach to an ab-initio description of open quantum systems
- Threshold Effects in Multi-channel Coupling and Spectroscopic Factors in Exotic Nuclei
- Resonances of 7He in the complex scaling method
- Effective Interaction Techniques for the Gamow Shell Model
- One-neutron removal strength of 7He into 6He using the complex scaling method