Excitation spectrum of spin-1 Kitaev spin liquids

ORAL

Abstract

We study the excitation spectrum of the spin-1 Kitaev model using the symmetric tensor network. By evaluating the virtual order parameters defined on the virtual Hilbert space in the tensor network formalism, we confirm the ground state is in a $\mathbb{Z}_2$ spin liquid phase. Using the correspondence between the transfer matrix spectrum and low-lying excitations, we find that contrary to the dispersive Majorana excitation in the spin-1/2 case, the isotropic spin-1 Kitaev model has a dispersive bosonic charge anyon excitation. Bottom of the gapped single-particle charge excitations are found at $\mathbf{K}, \mathbf{K}'=(\pm2\pi/3, \mp 2\pi/3)$, with a corresponding correlation length of $\xi \approx 6.7$ unit cells. The lower edge of the two-particle continuum, which is closely related to the dynamical structure factor measured in inelastic neutron scattering experiments, is obtained by extracting the excitations in the vacuum superselection sector in the anyon theory language.

*This work is partially supported by the Ministry of Science and Technology (MOST) of Taiwan under grants No. 107-2112-M-002-016-MY3, and 108-2112-M-002-020-MY3 (YHC, JZ, YJK). YBK is supported by the NSERC of Canada and the Center for Quantum Materials at the University of Toronto.

Publication: arXiv:2107.04730

Presenters

  • Yu-Hsueh Chen

    • Natl Taiwan Univ

Authors

  • Yu-Hsueh Chen

    • Natl Taiwan Univ
  • Jozef Genzor

    • Natl Taiwan Univ
  • Yong-Baek Kim

    • University of Toronto
    • Univ of Toronto
  • Ying-Jer Kao

    • Natl Taiwan Univ