Pseudopotential model of ultracold atomic collisions in quasi-one- and two-dimensional traps
Abstract
We describe a model for s-wave collisions between ground state atoms in optical lattices, considering especially the limits of quasi-one and two dimensional axisymmetric harmonic confinement. When the atomic interactions are modelled by an s-wave Fermi-pseudopotential, the relative motion energy eigenvalues can easily be obtained. The results show that except for a bound state, the trap eigenvalues are consistent with one- and two- dimensional scattering with renormalized scattering amplitudes. For absolute scattering lengths large compared with the tightest trap width, our model predicts a novel bound state of low energy and nearly-isotropic wavefunction extending on the order of the tightest trap width.
Keywords
Cite
@article{arxiv.quant-ph/0304001,
title = {Pseudopotential model of ultracold atomic collisions in quasi-one- and two-dimensional traps},
author = {E. L. Bolda and E. Tiesinga and P. S. Julienne},
journal= {arXiv preprint arXiv:quant-ph/0304001},
year = {2009}
}
Comments
9 pages, 8 figures; submitted to Phys. Rev. A