English

Correlated states controlled by tunable van Hove singularity in moir\'e WSe2

Strongly Correlated Electrons 2024-07-29 v2 Mesoscale and Nanoscale Physics

Abstract

Twisted bilayers of transition metal dichalcogenide semiconductors have enabled the discovery of superconductivity, ferromagnetism, correlated insulators and a series of new topological phases of matter. However, the connection between these electronic phases and the underlying band structure singularities in these materials has remained largely unexplored. Here, combining the magnetic circular dichroism and electronic compressibility measurements, we investigate the influence of a van Hove singularity on the correlated phases in bilayer WSe2 with twist angle between 2-3 degrees. We demonstrate stabilizing the Stoner ferromagnetism below moir\'e lattice filling one and Chern insulators at filling one by tuning the van Hove singularity cross the Fermi level using the electric and magnetic fields. The experimental observations are supported by the continuum model band structure calculations. Our results highlight the prospect of engineering the electronic phases by tunable van Hove singularities.

Keywords

Cite

@article{arxiv.2406.03315,
  title  = {Correlated states controlled by tunable van Hove singularity in moir\'e WSe2},
  author = {Patrick Knüppel and Jiacheng Zhu and Yiyu Xia and Zhengchao Xia and Zhongdong Han and Yihang Zeng and Kenji Watanabe and Takashi Taniguchi and Jie Shan and Kin Fai Mak},
  journal= {arXiv preprint arXiv:2406.03315},
  year   = {2024}
}
R2 v1 2026-06-28T16:54:37.568Z