The Local Potential Approximation for the Brueckner G-matrix
Abstract
The Brueckner G-matrix for a slab of nuclear matter is analyzed in the singlet and triplet channels. The complete Hilbert space is split into two domains, the model subspace , in which the two-particle propagator is calculated explicitly, and the complementary one, , in which the local potential approximation is used. This kind of local approximation was previously found to be quite accurate for the pairing problem. A set of model spaces with different values of the cut-off energy is considered, being the upper limit for the single-particle energies of the states belonging to . The independence of the G-matrix of is assumed as a criterion of validity of the local potential approximation. Such independence is obtained within few percent for MeV for both the channels under consideration.
Keywords
Cite
@article{arxiv.nucl-th/0104050,
title = {The Local Potential Approximation for the Brueckner G-matrix},
author = {M. Baldo and U. Lombardo and E. E. Saperstein and M. V. Zverev},
journal= {arXiv preprint arXiv:nucl-th/0104050},
year = {2015}
}
Comments
13 pages, 9 figures