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Article Dans Une Revue ACS Nano Année : 2016

Peculiar Magnetotransport Features of Ultranarrow Graphene Nanoribbons under High Magnetic Field

Résumé

Through magnetotransport measurements, we investigate ultrasmooth graphene bilayer nanoribbons obtained by multiwall carbon nanotube unzipping, under a high magnetic field up to 55 T. The high quality of the samples allows us to observe a Hall quantization in ribbons as narrow as 20 nm. The presence, for certain samples, of isolated peaks in the resistance plateau is found to be related to a very moderate long-range disorder, which induces magnetic-field-dependent interedge scattering. Tight-binding numerical simulations of electron transport illustrate and confirm this picture. Our study provides important insights into the quantum Hall effect in quasi-1D systems and indicates possible lines for future investigations of the nonchiral edge states induced by zigzag nanoribbon sections.
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Dates et versions

hal-01726846 , version 1 (08-03-2018)

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Haoliang Shen, Alessandro Cresti, Walter Escoffier, Yi Shi, Xinran Wang, et al.. Peculiar Magnetotransport Features of Ultranarrow Graphene Nanoribbons under High Magnetic Field. ACS Nano, 2016, 10 (2), pp.1853. ⟨10.1021/acsnano.5b05478⟩. ⟨hal-01726846⟩
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