Local versus nonlocal interactions in description of C
arXiv:nucl-th/0703001 · doi:10.1016/j.physletb.2007.10.033
Abstract
Local potentials fail to describe C as a system. Nonlocal potentials that renormalize the energy-dependent kernel of the resonating group method allow interpreting simultaneously the ground state and resonance of C as states. A comparison with fully microscopic calculations provides a measure of the importance of three-cluster exchanges in those states.
The tar.gz file has 1 tex file and 1 eps file
References in corpus (1)
Cited by in corpus (10)
- Global-Vector Representation of the Angular Motion of Few-Particle Systems II
- Addendum: Triton and hypertriton binding energies calculated from SU_6 quark-model baryon-baryon interactions
- Nuclear Matter from Effective Quark-Quark Interaction
- Localized , and Single-Particle Potentials in Finite Nuclei Calculated with Quark-Model Baryon-Baryon Interactions
- How quantum bound states bounce and the structure it reveals
- P-wave Lambda N - Sigma N coupling and the spin-orbit splitting of 9 Lambda Be
- Effective Field Theory for Bound State Reflection
- Resonances in C and Mg: what do we learn from a microscopic cluster theory?
- n alpha Resonating-Group Calculation with a Quark-Model G-Matrix NN Interaction
- Spatial Structure of the C Nucleus in a 3 Model with Deep Potentials Containing Forbidden States