Redundant Components in the 3 alpha Faddeev Equation Using 2 alpha RGM Kernel
arXiv:nucl-th/0201052 · doi:10.1143/PTP.107.993
Abstract
The 3 alpha Faddeev equation using 2 alpha RGM kernel involves redundant components whose contribution to the total wave function completely cancels out. We propose a practical method to solve this Faddeev equation, by eliminating the admixture of such redundant components. A complete equivalence between the present Faddeev approach and a variational approach using the translationally invariant harmonic-oscillator basis is numerically shown with respect to the 3 alpha bound state corresponding to the ground state of 12C.
8 pages, no figure
Cited by in corpus (13)
- Baryon-baryon interactions in the SU6 quark model and their applications to light nuclear systems
- Global-Vector Representation of the Angular Motion of Few-Particle Systems II
- Local versus nonlocal interactions in description of C
- Addendum: Triton and hypertriton binding energies calculated from SU_6 quark-model baryon-baryon interactions
- Faddeev calculation of 3 alpha and alpha alpha Lambda systems using alpha alpha resonating-group method kernel
- Comparative variational studies of states in three- models
- Triton binding energy calculated from the SU_6 quark-model nucleon-nucleon interaction
- Faddeev Calculation of the Hypertriton using the SU_6 Quark-Model Nucleon-Nucleon and Hyperon-Nucleon Interactions
- A Microscopic Cluster Description of 12C
- Removal of forbidden states in a three- system
- Case of Almost Redundant Components in 3 alpha Faddeev Equations
- Faddeev calculation of 6 He Lambda Lambda using SU_6 quark-model baryon-baryon interactions
- Lambda alpha, Sigma alpha and Xi alpha potentials derived from the SU6 quark-model baryon-baryon interaction