Graphene as a non-magnetic spin-current lens
Abstract
In spintronics, the ability to transport magnetic information often depends on the existence of a spin current traveling between two different magnetic objects acting as source and probe. A large fraction of this information never reaches the probe and is lost because the spin current tends to travel omni-directionally. We propose that a curved boundary between a gated and a non-gated region within graphene acts as an ideal lens for spin currents despite being entirely of non-magnetic nature. We show as a proof of concept that such lenses can be utilized to redirect the spin current that travels away from a source onto a focus region where a magnetic probe is located, saving a considerable fraction of the magnetic information that would be otherwise lost.
Cite
@article{arxiv.1009.6228,
title = {Graphene as a non-magnetic spin-current lens},
author = {F. S. M. Guimarães and A. T. Costa and R. B. Muniz and M. S. Ferreira},
journal= {arXiv preprint arXiv:1009.6228},
year = {2015}
}
Comments
9 pages, 3 figures