Feshbach molecules in a one-dimensional Fermi gas
arXiv:cond-mat/0506530 · doi:10.1103/PhysRevA.72.053625
Abstract
We consider the binding energy and the wave function of Feshbach molecules confined in a one-dimensional matter waveguide. We compare the binding energy with the experiment of Moritz et al. and find excellent agreement for the full magnetic field range explored experimentally.
Extended original comment to article form. Replaced original figure with 2 new figures. 1 page + 2 figures
References in corpus (2)
Cited by in corpus (12)
- Feshbach Resonances in Ultracold Gases
- Theory of ultracold Fermi gases
- Universal few-body physics and cluster formation
- Heteronuclear molecules in an optical lattice: Theory and experiment
- BEC-BCS crossover in an optical lattice
- Radio frequency spectra of Feshbach molecules in quasi-two dimensional geometries
- Resonant Feshbach scattering of fermions in one-dimensional optical lattices
- Shifts and widths of Feshbach resonances in atomic waveguides
- Dressed-molecules in resonantly-interacting ultracold atomic Fermi gases
- Two-channel model description of confinement-induced Feshbach molecules
- Resonant Superfluidity in an Optical Lattice
- Bound and scattering states in harmonic waveguides in the vicinity of free space Feshbach resonances