Spin 1/2 Fermions in the Unitary Limit.I
Abstract
This report concerns the energy of a zero-temperature many-body system of spin 1/2 fermions interacting via a two-body potential with a free space infinite scattering length and zero effective range; the Unitary limit. Given the corresponding phase-shift a one-term separable potential is obtained by inverse scattering assuming a momentum cut-off such that for . The \it effective \rm interaction in the many-body system is calculated in a pp-ladder approximation with Pauli-blocking but neglecting mean-field (dispersion) corrections; effective mass . Using only the zero relative momentum component of this interaction the total energy is (in units of the fermigas), a result reported by several previous authors. Integrating the momentum dependent interaction over the Fermi sea this energy is revised to This result is independent of density and of the cut-off if . With there is however a strong dependence on this cut-off. Including hh-ladders estimates give , but a reliable result would in this case require a Green's function calculation.
Keywords
Cite
@article{arxiv.0705.0944,
title = {Spin 1/2 Fermions in the Unitary Limit.I},
author = {H. S. Kohler},
journal= {arXiv preprint arXiv:0705.0944},
year = {2007}
}
Comments
8 pages