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Orbital order of spinless fermions near an optical Feshbach resonance

arXiv:1103.5964 · doi:10.1103/PhysRevA.84.051603

Abstract

We study the quantum phases of a three-color Hubbard model that arises in the dynamics of the p-band orbitals of spinless fermions in an optical lattice. Strong, color-dependent interactions are induced by an optical Feshbach resonance. Starting from the microscopic scattering properties of ultracold atoms, we derive the orbital exchange constants at 1/3 filling on the cubic optical lattice. Using this, we compute the phase diagram in a Gutzwiller ansatz. We find novel phases with 'axial orbital order' in which pz and px + ipy (or px - ipy) orbitals alternate.

4+epsilon pages, 3 figures. Similar to version published in PRA(R)