arXiv · 0803.4347
Multiband-Driven Superfluid-Insulator Transition of Fermionic Atoms in Optical Lattices: A Dynamical Mean-Field-Theory Study
Abstract
The superfluid-insulator transitions of the fermionic atoms in optical lattices are investigated by the two-site dynamical mean-field theory. It is shown that the Mott transition occurs as a result of the multiband effects. The quasiparticle weight in the superfluid state decreases significantly, as the system approaches the Mott transition point. By changing the interaction and the orbital splitting, we obtain the phase diagram at half filling. The numerical results are discussed in comparison with the effective boson model.
Explore related subjects
Keep this discovery
Takuji Higashiyama, Kensuke Inaba, Sei-ichiro Suga. 2008-03-30. Multiband-Driven Superfluid-Insulator Transition of Fermionic Atoms in Optical Lattices: A Dynamical Mean-Field-Theory Study. https://doi.org/10.1103/physreva.77.043624
Cite the original work for its findings. Save a collection to share your selection of sources.