Tunable multi-bands in twisted double bilayer graphene

2D MATERIALS(2022)

引用 2|浏览10
暂无评分
摘要
The bandstructure of a material, playing an important role in its electron transport property, is usually governed by the lattice configuration. Materials with a field-effect tunable band, such as bilayer [1] and rhombohedral trilayer graphene [2, 3], are more flexible for electronic applications. Here, on dual-gated twisted double bilayer graphene (TDBG) samples with small twist angle around 1(circle), we observe vertical electric-field-tunable bandstructures at multiple moire fillings with bandgap values continuously varying from zero to tens of mili-electron volts. Moreover, within the first moire filling on both electron and hole sides, the carrier transport deviates from Fermi liquid behavior, with measured resistivity exhibiting linear temperature dependence between 1.5 K and 50 K. Furthermore, under a vertical magnetic field, the coupling between the two bilayer graphene layers can also be turned on and off by a displacement field. Our results suggest TDBG with small twist angle is a platform for studying the evolution of multiple electric field tunable moire bands and the resulting emergent correlated electronic phases.
更多
查看译文
关键词
graphene, flat band, twistronics, electronic transport
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要