Weakly bound systems, continuum effects, and reactions
arXiv:1210.1927 · doi:10.1088/1742-6596/403/1/012022
Abstract
Structure of weakly bound/unbound nuclei close to particle drip lines is different from that around the valley of beta stability. A comprehensive description of these systems goes beyond standard Shell Model and demands an open quantum system description of the nuclear many-body system. We approach this problem using the Gamow Shell Model which provides a fully microscopic description of bound and unbound nuclear states, nuclear decays, and reactions. We present in this paper the first application of the GSM for a description of the elastic and inelastic scattering of protons on 6He.
Proc. Int. Conf. "Horizons of Innovative Theories, Experiments and Supercomputing in Nuclear Physics", June 4-7, 2012, New Orleans, Luisiana, USA; 10 pages, 4 figures
References in corpus (2)
Cited by in corpus (8)
- Recent development of complex scaling method for many-body resonances and continua in light nuclei
- Ab-initio No-Core Gamow Shell Model calculations with realistic interactions
- From bound states to the continuum
- Description of the proton and neutron radiative capture reactions in the Gamow shell model
- Gamow shell model description of He(,) elastic scattering reactions
- Precise comparison of the Gaussian expansion method and the Gamow shell model
- Nucleon-nucleon resonances at intermediate energies using a complex energy formalism
- Bound and resonance states of the dipolar anion of hydrogen cyanide: competition between threshold effects and rotation in an open quantum system