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Low-field Landau-level crossings in ABA pentalayer graphene revealed by sequential plateau disappearances
- Nam, Youngwoo;
- Gu, Daewon;
- Lee, Jaemin;
- Lee, Hyelang
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0초록
We investigated suspended Bernal-stacked (ABA) pentalayer graphene with ultralow disorder and observed well-defined quantum Hall plateaus and Landau-level crossings at magnetic fields below 2 T. As the magnetic field increases, the initially robust plateaus at filling factors nu = -22, -18, -14, -10, and -6 successively disappear from larger |nu| at characteristic fields B* approximate to 0.26, 0.32, 0.42, 0.62, and 1.3 T, respectively, where B* denotes the first field at which a given plateau vanishes. This sequence is consistent with crossings between the Nth Landau level (N = 5, 4, 3, 2, and 1) of a monolayer-graphene-like subband and a nearly field-independent low-lying Landau level of a bilayer-graphene-like subband. A Slonczewski-Weiss-McClure tight-binding model that includes only the dominant hopping parameters gamma(0) and gamma(1), augmented by an interaction-induced staggered layer potential, quantitatively reproduces these first-disappearance fields. These results establish ABA pentalayer graphene as a tunable platform in which the interplay between the parity-dictated subband structure and electron-electron interactions governs Landau-level crossings at unusually low magnetic fields.
키워드
- 제목
- Low-field Landau-level crossings in ABA pentalayer graphene revealed by sequential plateau disappearances
- 저자
- Nam, Youngwoo; Gu, Daewon; Lee, Jaemin; Lee, Hyelang
- 발행일
- 2026-03
- 유형
- Article
- 권
- 128
- 호
- 9