Many Body Methods and Effective Field Theory
Abstract
In the framework of pionless nucleon-nucleon effective field theory we study different approximation schemes for the nuclear many body problem. We consider, in particular, ladder diagrams constructed from particle-particle, hole-hole, and particle-hole pairs. We focus on the problem of finding a suitable starting point for perturbative calculations near the unitary limit (k_Fa)->infinity and (k_Fr)-> 0, where k_F is the Fermi momentum, a is the scattering length and r is the effective range. We try to clarify the relationship between different classes of diagrams and the large g and large D approximations, where g is the fermion degeneracy and D is the number of space time dimensions. In the large D limit we find that the energy per particle in the strongly interacting system is 1/2 the result for free fermions.
Keywords
Cite
@article{arxiv.nucl-th/0504088,
title = {Many Body Methods and Effective Field Theory},
author = {Thomas Schaefer and Chung-Wen Kao and Stephen R. Cotanch},
journal= {arXiv preprint arXiv:nucl-th/0504088},
year = {2009}
}
Comments
23 pages, 8 figures