High Island Densities and Long Range Repulsive Interactions: Fe on Epitaxial Graphene

Thumbnail Image
Date
2012-01-01
Authors
Binz, Steven
Hupalo, Myron
Liu, Xiaojie
Wang, Cai-Zhuang
Lu, Wen-Cai
Ho, Kai-Ming
Conrad, E.
Tringides, Michael
Major Professor
Advisor
Committee Member
Journal Title
Journal ISSN
Volume Title
Publisher
Abstract

The understanding of metal nucleation on graphene is essential for promising future applications, especially of magnetic metals which can be used in spintronics or computer storage media. A common method to study the grown morphology is to measure the nucleated island density n as a function of growth parameters. Surprisingly, the growth of Fe on graphene is found to be unusual because it does not follow classical nucleation: n is unexpectedtly high, it increases continuously with the deposited amount θ and shows no temperature dependence. These unusual results indicate the presence of long range repulsive interactions. Kinetic Monte Carlo simulations and density functional theory calculations support this conclusion. In addition to answering an outstanding question in epitaxial growth, i.e., to find systems where long range interactions are present, the high density of magnetic islands, tunable with θ, is of interest for nanomagnetism applications.

Series Number
Journal Issue
Is Version Of
Versions
Series
Academic or Administrative Unit
Type
article
Comments

This article is from Physical Review Letters 109 (2012): 026103, doi:10.1103/PhysRevLett.109.026103.

Rights Statement
Copyright
Sun Jan 01 00:00:00 UTC 2012
Funding
DOI
Supplemental Resources
Collections