English

Layer-dependent evolution of electronic structures and correlations in rhombohedral multilayer graphene

Mesoscale and Nanoscale Physics 2025-03-06 v2 Strongly Correlated Electrons

Abstract

The recent discovery of superconductivity and magnetism in trilayer rhombohedral graphene (RG) establishes an ideal, untwisted platform to study strong correlation electronic phenomena. However, the correlated effects in multilayer RG have received limited attention, and, particularly, the evolution of the correlations with increasing layer number remains an unresolved question. Here, we show the observation of layer-dependent electronic structures and correlations, under surprising liquid nitrogen temperature, in RG multilayers from 3 to 9 layers by using scanning tunneling microscopy and spectroscopy. We explicitly determine layer-enhanced low-energy flat bands and interlayer coupling strengths. The former directly demonstrates the further flattening of low-energy bands in thicker RG, and the latter indicates the presence of varying interlayer interactions in RG multilayers. Moreover, we find significant splittings of the flat bands, ranging from ~50-80 meV, at 77 K when they are partially filled, indicating the emergence of interaction-induced strongly correlated states. Particularly, the strength of the correlated states is notably enhanced in thicker RG and reaches its maximum in the six-layer, validating directly theoretical predictions and establishing abundant new candidates for strongly correlated systems. Our results provide valuable insights into the layer dependence of the electronic properties in RG and demonstrate it as a suitable system for investigating robust and highly accessible correlated phases.

Keywords

Cite

@article{arxiv.2312.13637,
  title  = {Layer-dependent evolution of electronic structures and correlations in rhombohedral multilayer graphene},
  author = {Yang Zhang and Yue-Ying Zhou and Shihao Zhang and Hao Cai and Ling-Hui Tong and Yuan Tian and Tongtong Chen and Qiwei Tian and Chen Zhang and Yiliu Wang and Xuming Zou and Xingqiang Liu and Yuanyuan Hu and Ya-Ning Ren and Li Zhang and Lijie Zhang and Wen-Xiao Wang and Lin He and Lei Liao and Zhihui Qin and Long-Jing Yin},
  journal= {arXiv preprint arXiv:2312.13637},
  year   = {2025}
}

Comments

20 pages, 4 figures

R2 v1 2026-06-28T13:58:24.540Z