| Literature DB >> 27088134 |
Fabian D Natterer1, Jeonghoon Ha2, Hongwoo Baek3, Duming Zhang2, William Cullen2, Nikolai B Zhitenev1, Young Kuk4, Joseph A Stroscio1.
Abstract
We report on spatial measurements of the superconducting proximity effect in epitaxial graphene induced by a graphene-superconductor interface. Superconducting aluminum films were grown on epitaxial multilayer graphene on SiC. The aluminum films were discontinuous with networks of trenches in the film morphology reaching down to exposed graphene terraces. Scanning tunneling spectra measured on the graphene terraces show a clear decay of the superconducting energy gap with increasing separation from the graphene-aluminum edges. The spectra were well described by Bardeen-Cooper-Schrieffer (BCS) theory. The decay length for the superconducting energy gap in graphene was determined to be greater than 400 nm. Deviations in the exponentially decaying energy gap were also observed on a much smaller length scale of tens of nanometers.Entities:
Year: 2016 PMID: 27088134 PMCID: PMC4832425 DOI: 10.1103/PhysRevB.93.045406
Source DB: PubMed Journal: Phys Rev B Impact factor: 4.036