arXiv · 1109.5819
Implanted Bottom Gate for Epitaxial Graphene on Silicon Carbide
Abstract
We present a technique to tune the charge density of epitaxial graphene via an electrostatic gate that is buried in the silicon carbide substrate. The result is a device in which graphene remains accessible for further manipulation or investigation. Via nitrogen or phosphor implantation into a silicon carbide wafer and subsequent graphene growth, devices can routinely be fabricated using standard semiconductor technology. We have optimized samples for room temperature as well as for cryogenic temperature operation. Depending on implantation dose and temperature we operate in two gating regimes. In the first, the gating mechanism is similar to a MOSFET, the second is based on a tuned space charge region of the silicon carbide semiconductor. We present a detailed model that describes the two gating regimes and the transition in between.
Explore related subjects
Keep this discovery
Daniel Waldmann, Johannes Jobst, Felix Fromm, Florian Speck, Thomas Seyller, Michael Krieger, Heiko B. Weber. 2011-09-27. Implanted Bottom Gate for Epitaxial Graphene on Silicon Carbide. https://doi.org/10.1088/0022-3727/45/15/154006
Cite the original work for its findings. Save a collection to share your selection of sources.