$F$-wave pairing of cold atoms in optical lattices
Quantum Gases
2010-11-18 v2 Superconductivity
Abstract
The tremendous development of cold atom physics has opened up a whole new opportunity to study novel states of matter which are not easily accessible in solid state systems. Here we propose to realize the -wave pairing superfluidity of spinless fermions in the -orbital bands of the two dimensional honeycomb optical lattices. The non-trivial orbital band structure rather than strong correlation effects gives rise to the unconventional pairing with the nodal lines of the -wave symmetry. With a confining harmonic trap, zero energy Andreev bound states appear around the circular boundary with a six-fold symmetry. The experimental realization and detection of this novel pairing state are feasible.
Keywords
Cite
@article{arxiv.0905.1146,
title = {$F$-wave pairing of cold atoms in optical lattices},
author = {Wei-Cheng Lee and Congjun Wu and S. Das Sarma},
journal= {arXiv preprint arXiv:0905.1146},
year = {2010}
}
Comments
9 pages, 5 figures