English

Quantum phases of interacting three-component fermions under the influence of spin-orbit coupling and Zeeman fields

Quantum Gases 2016-12-08 v1

Abstract

We describe the quantum phases of interacting three component fermions in the presence of spin-orbit coupling, as well as linear and quadratic Zeeman fields. We classify the emerging superfluid phases in terms of the loci of zeros of their quasi-particle excitation spectrum in momentum space, and we identify several Lifshitz-type topological transitions. In the particular case of vanishing quadratic Zeeman field, a quintuple point exists where four gapless superfluid phases with surface and line nodes converge into a fully gapped superfluid phase. Lastly, we also show that the simultaneous presence of spin-orbit and Zeeman fields transforms a momentum-independent scalar order parameter into an explicitly momentum-dependent tensor in the generalized helicity basis.

Keywords

Cite

@article{arxiv.1612.02365,
  title  = {Quantum phases of interacting three-component fermions under the influence of spin-orbit coupling and Zeeman fields},
  author = {Doga Murat Kurkcuoglu and C. A. R. Sa de Melo},
  journal= {arXiv preprint arXiv:1612.02365},
  year   = {2016}
}

Comments

7 pages, 5 figures (submitted to Physical Review on June 8th, 2016)