4.6 Article

Theory of resonant tunneling in bilayer-graphene/hexagonal-boron-nitride heterostructures

Journal

APPLIED PHYSICS LETTERS
Volume 106, Issue 9, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.4914324

Keywords

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Funding

  1. Center for Low Energy Systems Technology (LEAST) one of six centers of STARnet, a Semiconductor Research Corporation program by MARCO
  2. DARPA

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A theory is developed for calculating vertical tunneling current between two sheets of bilayer graphene separated by a thin, insulating layer of hexagonal boron nitride, neglecting many-body effects. Results are presented using physical parameters that enable comparison of the theory with recently reported experimental results. Observed resonant tunneling and negative differential resistance in the current-voltage characteristics are explained in terms of the electrostatically-induced band gap, gate voltage modulation, density of states near the band edge, and resonances with the upper sub-band. These observations are compared to ones from similar heterostructures formed with monolayer graphene. (C) 2015 AIP Publishing LLC.

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