Intralayer Phonons in Multilayer Graphene Moiré Superlattices

Miao Ling Lin, Min Feng, Jiang Bin Wu, Fei Rong Ran, Tao Chen, Wei Xia Luo, Heng Wu, Wen Peng Han, Xin Zhang, Xue Lu Liu, Yang Xu, Hai Li, Yu Fang Wang, Ping Heng Tan

科研成果: 期刊稿件文章同行评审

5 引用 (Scopus)

摘要

Moiré pattern in twisted multilayers (tMLs) induces many emergent phenomena by subtle variation of atomic registry to modulate quasiparticles and their interactions, such as superconductivity, moiré excitons, and moiré phonons. The periodic superlattice potential introduced by moiré pattern also underlies patterned interlayer coupling at the interface of tMLs. Although this arising patterned interfacial coupling is much weaker than in-plane atomic interactions, it is crucial in moiré systems, as captured by the renormalized interlayer phonons in twisted bilayer transitional metal dichalcogenides. Here, we determine the quantitative relationship between the lattice dynamics of intralayer out-of-plane optical (ZO) phonons and patterned interfacial coupling in multilayer graphene moiré superlattices (MLG-MS) by the proposed perturbation model, which is previously challenging for MLGs due to their out-of-phase displacements of adjacent atoms in one atomic plane. We unveil that patterned interfacial coupling introduces profound modulations on Davydov components of nonfolded ZO phonon that are localized within the AB-stacked constituents, while the coupling results in layer-extended vibrations with symmetry of moiré pattern for moiré ZO phonons. Our work brings further degrees of freedom to engineer moiré physics according to the modulations imprinted on the phonon frequency and wavefunction.

源语言英语
文章编号9819373
期刊Research
2022
DOI
出版状态已出版 - 2022

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