Configuration mixing effects in neutron-rich carbon isotopes
arXiv:1507.06809 · doi:10.1088/1742-6596/420/1/012049
Abstract
Shell model calculations are done to study the structure of neutron-rich carbon isotopes. For both even-A and odd-A neutron-rich carbon isotopes, the energy levels are strongly affected by the configuration mixing of valence neutrons. The calculated energy levels in the nucleus C are significantly improved compared with experimental values when the model space of the three valence neutrons is enlarged from pure configuration to full space. We also investigate the configuration mixing effect on the values in even-even nuclei C.
References in corpus (4)
- Nuclear magic numbers: new features far from stability
- Shell-model study of boron, carbon, nitrogen and oxygen isotopes based on monopole-based-universal interaction
- Lifetime measurements of first excited states in 16,18C
- Shell evolution in neutron-rich carbon isotopes: Unexpected enhanced role of neutron-neutron correlation