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Universal Voltage Scaling Due to Self-Averaging of the Quantum Corrections in Graphene

arXiv (Cornell University)(2018)

Cited 23|Views29
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Abstract
The differential conductance of graphene is shown to exhibit a zero-bias anomaly at low temperatures, arising from a suppression of the quantum corrections due to weak localization and electron interactions. A simple rescaling of these data, free of any adjustable parameters, shows that this anomaly exhibits a universal, temperature- (T) independent form. According to this, the differential conductance is approximately constant at small voltages (VMore
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Graphene
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