Helical-edge transport near ν = 0 of monolayer graphene

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autoren

  • Sung Ju Hong
  • Christopher Belke
  • Johannes C. Rode
  • Benedikt Brechtken
  • Rolf J. Haug

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Details

OriginalspracheEnglisch
Seiten (von - bis)25-30
Seitenumfang6
FachzeitschriftCurrent applied physics
Jahrgang27
Frühes Online-Datum16 Apr. 2021
PublikationsstatusVeröffentlicht - Juli 2021

Abstract

The complex nature of filling factor ν = 0 of monolayer graphene is studied in magnetotransport experiments. As a function of perpendicular magnetic field a metal-insulator transition is observed, which is attributed to disorder-induced Landau level broadening in the canted antiferromagnetic phase. In the metallic regime a separation of the zeroth Landau level appears and signs of the quantum spin Hall effect are seen near ν = 0. In addition to local transport, nonlocal transport experiments show results being consistent with helical edge transport.

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Helical-edge transport near ν = 0 of monolayer graphene. / Hong, Sung Ju; Belke, Christopher; Rode, Johannes C. et al.
in: Current applied physics, Jahrgang 27, 07.2021, S. 25-30.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Hong SJ, Belke C, Rode JC, Brechtken B, Haug RJ. Helical-edge transport near ν = 0 of monolayer graphene. Current applied physics. 2021 Jul;27:25-30. Epub 2021 Apr 16. doi: 10.1016/j.cap.2021.04.001
Hong, Sung Ju ; Belke, Christopher ; Rode, Johannes C. et al. / Helical-edge transport near ν = 0 of monolayer graphene. in: Current applied physics. 2021 ; Jahrgang 27. S. 25-30.
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AU - Hong, Sung Ju

AU - Belke, Christopher

AU - Rode, Johannes C.

AU - Brechtken, Benedikt

AU - Haug, Rolf J.

N1 - Funding Information: The authors gratefully acknowledge valuable discussions with P. G. Silvestrov and P. Recher. This work is supported by School for Contacts in Nanosystems, DFG within priority program SPP 1459, Joint Lower Saxony-Israeli research project, and Fundamentals of Physics and Metrology Initiative of Lower Saxony. Part of this study has been performed using facilities at the LNQE, Leibniz Universit?t Hannover, Germany.

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