English

Evidence of pair-density wave in doping Kitaev spin liquid on the honeycomb lattice

Strongly Correlated Electrons 2021-07-08 v1

Abstract

We study the effects of doping the Kitaev model on the honeycomb lattice where the spins interact via the bond-directional interaction JKJ_K, which is known to have a quantum spin liquid as its exact ground state. The effect of hole doping is studied within the tt-JKJ_K model on a three-leg cylinder using density-matrix renormalization group. Upon light doping, we find that the ground state of the system has quasi-long-range charge-density-wave correlations but short-range single-particle correlations. The dominant pairing channel is the even-parity superconducting pair-pair correlations with dd-wave-like symmetry, which oscillate in sign as a function of separation with a period equal to that of the spin-density wave and two times the charge-density wave. Although these correlations fall rapidly (possibly exponentially) at long distances, this is never-the-less the first example where a pair-density wave is the strongest SC order on a bipartite lattice. Our results may be relevant to Na2IrO3{\rm Na_2IrO_3} and α\alpha-RuCl3{\rm RuCl_3} upon doping.

Keywords

Cite

@article{arxiv.2008.03858,
  title  = {Evidence of pair-density wave in doping Kitaev spin liquid on the honeycomb lattice},
  author = {Cheng Peng and Yi-Fan Jiang and Thomas P. Devereaux and Hong-Chen Jiang},
  journal= {arXiv preprint arXiv:2008.03858},
  year   = {2021}
}

Comments

8 pages, 10 figures