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Single-layer behavior and slow carrier density dynamic of twisted graphene bilayer

Published 2 Nov 2011 in cond-mat.str-el, cond-mat.mes-hall, and cond-mat.mtrl-sci | (1111.0411v2)

Abstract: We report scanning tunneling microscopy (STM) and spectroscopy (STS) of twisted graphene bilayer on SiC substrate. For twist angle ~ 4.5o the Dirac point ED is located about 0.40 eV below the Fermi level EF due to the electron doping at the graphene/SiC interface. We observed an unexpected result that the local Dirac point around a nanoscaled defect shifts towards the Fermi energy during the STS measurements (with a time scale about 100 seconds). This behavior was attributed to the decoupling between the twisted graphene and the substrate during the measurements, which lowers the carrier density of graphene simultaneously.

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