Particle Density Distributions in Fermi Gas Superfluids: Molecular Boson Effects
arXiv:cond-mat/0402383 · doi:10.1103/PhysRevA.71.033601
Abstract
We show how to describe the behavior associated with the usual BCS- Bose Einstein condensation (BEC) crossover ground state. We confine our attention here to the BEC and near-BEC regime where analytical calculations are possible. At finite , non-condensed fermion pairs must be included, although they have been generally ignored in the literature. Within this BEC regime we compute the equations of state for the one and two channel models; these two cases correspond to whether Feshbach resonance effects are omitted or included. Differences between these two cases can be traced to differences between the nature of a Cooper pair and bosonic condensate. Our results are also compared with the Gross Pitaevskii equations of state for true bosons. Differences found here are associated with the underlying fermionic character of the system. Finally, the particle density distribution functions for a trap containing superfluid fermionic atoms are computed using a Thomas-Fermi approach. The one and two channel behavior is found to be very different; we find a narrowing of the density profile as a result of Feshbach resonance effects. Importantly, we infer that the ratio between bosonic and fermionic scattering lengths depends on the magnetic detuning and is generally smaller than 2. Future experiments will be required to determine to what extent this ratio varies with magnetic fields.
8 pages, 2 figure, Revtex 4, submitted to PRA; manuscript expanded, figure added
References in corpus (12)
- Observation of resonance condensation of fermionic atom pairs
- Condensation of Pairs of Fermionic Atoms Near a Feshbach Resonance
- Observation of Bose-Einstein Condensation of Molecules
- Experimental Study of the BEC-BCS Crossover Region in Lithium 6
- Weakly bound dimers of fermionic atoms
- Tuning the scattering length with an optically induced Feshbach resonance
- Theory of Superconductivity in Strongly Correlated Electron Systems
- Collective modes of trapped gases at the BEC-BCS crossover
- The Nature of Superfluidity in Ultracold Fermi Gases Near Feshbach Resonances
- Momentum distribution of a trapped Fermi gas with large scattering length
- Shrinking of a condensed fermionic cloud in a trap approaching the BEC limit
- The pseudogap state in superconductors: Extended Hartree approach to time-dependent Ginzburg-Landau Theory
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- Comparison of Different Pairing Fluctuation Approaches to BCS-BEC Crossover
- Population of closed-channel molecules in trapped Fermi gases with broad Feshbach resonances
- Dressed-molecules in resonantly-interacting ultracold atomic Fermi gases
- Dynamical mean-field equations for strongly interacting fermionic atoms in a potential trap