Epitaxial Graphene Electronic Structure And Transport
Abstract
Since its inception in 2001, the science and technology of epitaxial graphene on hexagonal silicon carbide has matured into a major international effort and is poised to become the first carbon electronics platform. A historical perspective is presented and the unique electronic properties of single and multilayered epitaxial graphenes on electronics grade silicon carbide are reviewed. Early results on transport and the field effect in Si-face grown graphene monolayers provided proof-of-principle demonstrations. Besides monolayer epitaxial graphene, attention is given to C-face grown multilayer graphene, which consists of electronically decoupled graphene sheets. Production, structure, and electronic structure are reviewed. The electronic properties, interrogated using a wide variety of surface, electrical and optical probes, are discussed. An overview is given of recent developments of several device prototypes including resistance standards based on epitaxial graphene quantum Hall devices and new ultrahigh frequency analog epitaxial graphene amplifiers.
Keywords
Cite
@article{arxiv.1003.4776,
title = {Epitaxial Graphene Electronic Structure And Transport},
author = {Walt A. de Heer and Claire Berger and Xiaosong Wu and Mike Sprinkle and Yike Hu and Ming Ruan and Joseph A. Stroscio and Phillip N. First and Robert Haddon and Benjamin Piot and Clement Faugeras and Marek Potemski and Jeong-Sun Moon},
journal= {arXiv preprint arXiv:1003.4776},
year = {2015}
}
Comments
18 pages, 10 figures to be published in J. Phys. D, special Issue on Carbon Related Materials Cluster