Observation of chirality transition of quasiparticles at stacking solitons in trilayer graphene

Long Jing Yin, Wen Xiao Wang, Yu Zhang, Yang Yang Ou, Hao Ting Zhang, Cai Yun Shen, Lin He

Research output: Contribution to journalArticlepeer-review

21 Citations (Scopus)

Abstract

Trilayer graphene (TLG) exhibits rich, alternative electronic properties and extraordinary quantum Hall phenomena owing to enhanced electronic interactions and tunable chirality of its quasiparticles. Here, we report direct observation of chirality transition of quasiparticles at stacking solitons of TLG via spatial-resolved Landau level spectroscopy. The one-dimensional stacking solitons with width of the order of 10 nm separate adjacent Bernal-stacked TLG and rhombohedral-stacked TLG. By using high-field tunneling spectra from scanning tunneling microscopy, we measured Landau quantization in both the Bernal-stacked TLG and the rhombohedral-stacked TLG and, importantly, we observed evolution of quasiparticles between the chiral degree l=1 and 2 and l=3 across the stacking domain-wall solitons. Our experiment indicates that such a chirality transition occurs smoothly, accompanying the transition of the stacking orders of TLG, around the domain-wall solitons. This result demonstrates the important relationship between the crystallographic stacking order and the chirality of quasiparticles in graphene systems.

Original languageEnglish
Article number081402
JournalPhysical Review B
Volume95
Issue number8
DOIs
Publication statusPublished - 6 Feb 2017
Externally publishedYes

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