English

Moore-Read state in Half-filled Moir\'e Chern band from three-body Pseudo-potential

Strongly Correlated Electrons 2024-03-19 v1

Abstract

The moir\'e system provides a tunable platform for exploring exotic phases of materials. This article shows the possible realization of a non-Abelian state characterized by the Moore-Read wavefunction in a half-filled moir\'e Chern band, exemplified by twisted MoTe2\rm MoTe_2. This is achieved by introducing short-range repulsive three-body interaction. Exact diagonalization is employed to examine the spectrum in finite size. The incompressibility of the system, the degeneracy of the ground states, and the number of low-energy states provide compelling evidence to identify the ground state as the Moore-Read state. We further interpolate between the three-body interaction and Coulomb interaction to show a phase transition between the composite Fermi-liquid and the Moore-Read state. Finally, we consider the effect of band mixing and derive the three-body interaction using perturbation theory. By exploring the conditions under which band mixing effects mimic short-range repulsive three-body interaction we provide insights towards realizing non-Abelian phases of matter in the moir\'e system.

Keywords

Cite

@article{arxiv.2403.11478,
  title  = {Moore-Read state in Half-filled Moir\'e Chern band from three-body Pseudo-potential},
  author = {Lu Zhang and Xue-Yang Song},
  journal= {arXiv preprint arXiv:2403.11478},
  year   = {2024}
}

Comments

9 pages, 6 figs