Helical Edge States and Quantum Phase Transitions in Tetralayer Graphene

dc.contributor.authorChe, Shi
dc.contributor.authorShi, Yanmeng
dc.contributor.authorYang, Jiawei
dc.contributor.authorTian, Haidong
dc.contributor.authorChen, Ruoyu
dc.contributor.authorTaniguchi, Takashi
dc.contributor.authorWatanabe, Kenji
dc.contributor.authorSmirnov, Dmitry
dc.contributor.authorLau, Chun Ning
dc.contributor.authorShimshoni, Efrat
dc.contributor.authorMurthy, Ganpathy
dc.contributor.authorFertig, Herbert Abraham
dc.date.accessioned2025-02-20T16:22:38Z
dc.date.available2025-02-20T16:22:38Z
dc.date.issued2020-07-13
dc.descriptionThis record is for a(n) offprint of an article published in Physical Review Letters on 2020-07-13.
dc.description.abstractHelical conductors with spin-momentum locking are promising platforms for Majorana fermions. Here we report observation of two topologically distinct phases supporting helical edge states in charge neutral Bernal-stacked tetralayer graphene in Hall bar and Corbino geometries. As the magnetic field $B_⊥$ and out-of-plane displacement field $D$ are varied, we observe a phase diagram consisting of an insulating phase and two metallic phases, with 0, 1, and 2 helical edge states, respectively. These phases are accounted for by a theoretical model that relates their conductance to spin-polarization plateaus. Transitions between them arise from a competition among interlayer hopping, electrostatic and exchange interaction energies. Our work highlights the complex competing symmetries and the rich quantum phases in few-layer graphene.
dc.description.versionoffprint
dc.identifier.citationChe, Shi, et al. "Helical Edge States and Quantum Phase Transitions in Tetralayer Graphene." Physical Review Letters, vol. 125, 2020-07-13.
dc.identifier.otherBRITE 5102
dc.identifier.urihttps://hdl.handle.net/2022/32403
dc.language.isoen
dc.relation.journalPhysical Review Letters
dc.titleHelical Edge States and Quantum Phase Transitions in Tetralayer Graphene

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