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Topological Fermiology of gate-tunable Rashba electron gases

  • Jie Hu
  • , Ze Zheng Fang
  • , Feng Sheng
  • , Chenqiang Hua*
  • , Chuanying Xi
  • , Guangli Kuang
  • , Li Pi
  • , Kenji Watanabe
  • , Takashi Taniguchi
  • , Qing Lin Xia*
  • , Yi Zheng*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

By introducing first-order quantum phases as topological invariants, recent symmetry analysis-based theories have reinvigorated magnetic quantum oscillations as a versatile quantum probe for unfolding the Fermi surface topology along with the geometry information, i.e., topo-Fermiology. Here, we demonstrate the comprehensive topo-Fermiology of high-mobility Rashba two-dimensional electron gases with ultragate tunability of spin-orbit coupling parameter in few-layer black arsenic. The remarkable consistencies with the key theoretical predictions of period doubling in quantum oscillations, gate-tunable aperiodic beating patterns, and the symmetry-enforced Landau level crossing phenomena controlled by the competition between Rashba coupling and the Zeeman interaction, which ultimately manifests as all odd-filling factor integer quantum Hall effect with superb sensitivity to quantum phases, establish topo-Fermiology as an indispensable methodology for studying topological quantum matters.

Original languageEnglish
Article numbereadp8208
JournalScience Advances
Volume10
Issue number47
DOIs
StatePublished - 22 Nov 2024
Externally publishedYes

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