English

Mixed triplet and singlet pairing in multicomponent ultracold fermion systems with dipolar interactions

Quantum Gases 2010-01-26 v5 Superconductivity

Abstract

The symmetry properties of the Cooper pairing problem for multi-component ultra-cold dipolar molecular systems are investigated. The dipolar anisotropy provides a natural and robust mechanism for both triplet and singlet Cooper pairing to first order in the interaction strength. With a purely dipolar interaction, the triplet pzp_z-like polar pairing is the most dominant. A short-range attractive interaction can enhance the singlet pairing to be nearly degenerate with the triplet pairing. We point out that these two pairing channels can mix by developing a relative phase of ±π2\pm\frac{\pi}{2}, thus spontaneously breaking time-reversal symmetry. We also suggest the possibility of such mixing of triplet and singlet pairing in other systems.

Keywords

Cite

@article{arxiv.0910.4940,
  title  = {Mixed triplet and singlet pairing in multicomponent ultracold fermion systems with dipolar interactions},
  author = {Congjun Wu and J. E. Hirsch},
  journal= {arXiv preprint arXiv:0910.4940},
  year   = {2010}
}

Comments

accepted by Phys. Rev. B