arXiv · 2006.16246
Mathematical modelling of charge transport in graphene heterojunctions
Abstract
A typical graphene heterojunction device can be divided into two classical zones, where the transport is basically diffusive, separated by a "quantum active region" (e.g., a locally gated region), where the charge carriers are scattered according to the laws of quantum mechanics.In this paper we derive a mathematical model of such a device, where the classical regions are described by drift-diffusion equations and the quantum zone is seen as an interface where suitable transmission conditions are imposed that take into account the quantum scattering process. Numerical simulations show good agreement with experimental data.
Explore related subjects
Keep this discovery
Luigi Barletti, Giovanni Nastasi, Claudia Negulescu, Vittorio Romano. 2020-06-29. Mathematical modelling of charge transport in graphene heterojunctions. https://arxiv.org/abs/2006.16246
Cite the original work for its findings. Save a collection to share your selection of sources.