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Size quantization of Dirac fermions in graphene constrictions

Terrés, B. and Chizhova, L.A. and Libisch, F. and Peiro, J. and Jörger, D. and Burgdörfer, Joachim (2016) Size quantization of Dirac fermions in graphene constrictions. NATURE COMMUNICATIONS, 7. ISSN 2041-1723

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Abstract

Quantum point contacts are cornerstones of mesoscopic physics and central building blocks for quantum electronics. Although the Fermi wavelength in high-quality bulk graphene can be tuned up to hundreds of nanometres, the observation of quantum confinement of Dirac electrons in nanostructured graphene has proven surprisingly challenging. Here we show ballistic transport and quantized conductance of size-confined Dirac fermions in lithographically defined graphene constrictions. At high carrier densities, the observed conductance agrees excellently with the Landauer theory of ballistic transport without any adjustable parameter. Experimental data and simulations for the evolution of the conductance with magnetic field unambiguously confirm the identification of size quantization in the constriction. Close to the charge neutrality point, bias voltage spectroscopy reveals a renormalized Fermi velocity of â 141.5 × 10 6 m s â 1 in our constrictions. Moreover, at low carrier density transport measurements allow probing the density of localized states at edges, thus offering a unique handle on edge physics in graphene devices.

Item Type: Article
Subjects: Q Science / természettudomány > QC Physics / fizika
SWORD Depositor: MTMT SWORD
Depositing User: MTMT SWORD
Date Deposited: 04 Aug 2023 10:49
Last Modified: 04 Aug 2023 10:49
URI: http://real.mtak.hu/id/eprint/170966

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