Low-energy reflectivity of electrons from single- and multi-layer graphene is examined both theoretically and experimentally. A series of minima in the reflectivity over the energy range of 0 - 8 eV are found, with the number of minima depending on the number of graphene layers. Using first-principles computations, it is demonstrated that a free standing n-layer graphene slab produces n-1 reflectivity minima. This same result is also found experimentally for graphene supported on SiO2. For graphene bonded onto other substrates it is argued that a similar series of reflectivity minima is expected, although in certain cases an additional minimum occurs, at an energy that depends on the graphene-substrate separation and the effective potential in that space.
@article{arxiv.1211.6676,
title = {Low-energy Electron Reflectivity from Graphene},
author = {R. M. Feenstra and N. Srivastava and Qin Gao and M. Widom and Bogdan Diaconescu and Taisuke Ohta and G. L. Kellogg and J. T. Robinson and I. V. Vlassiouk},
journal= {arXiv preprint arXiv:1211.6676},
year = {2013}
}
Comments
16 pages, 4 figures; version 2 adds figure S1 to supplementary material and make minor changes in text throughout paper