Disordered Electrical Potential Observed on the Surface of SiO by Electric Field Microscopy
arXiv:0905.2941 · doi:10.1088/0953-8984/22/4/045002
Abstract
The electrical potential on the surface of nm thick SiO grown on single crystalline Si substrates has been characterized at ambient conditions using electric field microscopy. Our results show an inhomogeneous potential distribution with fluctuations up to V within regions of m. The potential fluctuations observed at the surface of these usual dielectric holders of graphene sheets should induce strong variations in the graphene charge densities and provide a simple explanation for some of the anomalous behaviors of the transport properties of graphene.
4 pages and 4 figures
References in corpus (8)
- Electric Field Effect in Atomically Thin Carbon Films
- Ultrahigh electron mobility in suspended graphene
- Ultrathin epitaxial graphite: 2D electron gas properties and a route toward graphene-based nanoelectronics
- Giant Intrinsic Carrier Mobilities in Graphene and Its Bilayer
- Suspended Graphene: a bridge to the Dirac point
- Approaching the Dirac point in high mobility multi-layer epitaxial graphene
- Electrostatic Force Microscopy on Oriented Graphite Surfaces: Where Insulating and Conducting Behaviors Coexist
- Integer Quantum Hall Effect in Graphite