BCS-BEC crossover and quantum phase transition in an ultracold Fermi gas under spin-orbit coupling
arXiv:1404.0140 · doi:10.1103/PhysRevA.89.063610
Abstract
In this work, we study the BCS-BEC crossover and quantum phase transition in a Fermi gas under Rashba spin-orbit coupling close to a Feshbach resonance. By adopting a two-channel model, we take into account of the closed channel molecules, and show that combined with spin-orbit coupling, a finite background scattering in the open channel can lead to two branches of solution for both the two-body and the many-body ground states. The branching of the two-body bound state solution originates from the avoided crossing between bound states in the open and the closed channels, respectively. For the many-body states, we identify a quantum phase transition in the upper branch regardless of the sign of the background scattering length, which is in clear contrast to the case without spin-orbit coupling. For systems with negative background scattering length in particular, we show that the bound state in the open channel, and hence the quantum phase transition in the upper branch, are induced by spin-orbit coupling. We then characterize the critical detuning of the quantum phase transition for both positive and negative background scattering lengths, and demonstrate the optimal parameters for the critical point to be probed experimentally.
7 pages, 4 figures
References in corpus (11)
- Spin-Injection Spectroscopy of a Spin-Orbit Coupled Fermi Gas
- Non-Abelian Topological Order in S-Wave Superfluids of Ultracold Fermionic Atoms
- superfluid from s-wave interactions of fermionic cold atoms
- BCS-BEC crossover induced by a synthetic non-Abelian gauge field
- Unconventional superfluid in a two-dimensional Fermi gas with anisotropic spin-orbit coupling and Zeeman fields
- Finite-Momentum Dimer Bound State in Spin-Orbit Coupled Fermi Gas
- Modified Bethe-Peierls boundary condition for ultracold atoms with Spin-Orbit coupling
- Molecule and polaron in a highly polarized two-dimensional Fermi gas with spin-orbit coupling
- BCS-BEC crossover and quantum phase transition for 6Li and 40K atoms across Feshbach resonance
- Validity of single-channel model for a spin-orbit coupled atomic Fermi gas near Feshbach resonances
- Significance of dressed molecules in a quasi-two-dimensional polarized Fermi gas