Scattering length of composite bosons in the 3D BCS-BEC crossover
Abstract
We study the zero-temperature grand potential of a three-dimensional superfluid made of ultracold fermionic alkali-metal atoms in the BCS-BEC crossover. In particular, we analyze the zero-point energy of both fermionic single-particle excitations and bosonic collective excitations. The bosonic elementary excitations, which are crucial to obtain a reliable equation of state in the BEC regime, are obtained with a low-momentum expansion up to the forth order of the quadratic (Gaussian) action of the fluctuating pairing field. By performing a cutoff regularization and renormalization of Gaussian fluctuations, we find that the scattering length of composite bosons, bound states of fermionic pairs, is given by , where is the scattering length of fermions.
Keywords
Cite
@article{arxiv.1502.06452,
title = {Scattering length of composite bosons in the 3D BCS-BEC crossover},
author = {L. Salasnich and G. Bighin},
journal= {arXiv preprint arXiv:1502.06452},
year = {2015}
}
Comments
5 pages; accepted for publication in Phys. Rev. A