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  5. Graphene-hexagonal boron nitride resonant tunneling diodes as high-frequency oscillators

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Article
English
2015

Graphene-hexagonal boron nitride resonant tunneling diodes as high-frequency oscillators

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English
2015
Applied Physics Letters
Vol 107 (10)
DOI: 10.1063/1.4930230

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Konstantin ‘kostya’  Novoselov
Konstantin ‘kostya’ Novoselov

The University of Manchester

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Jennifer Gaskell
L. Eaves
Konstantin ‘kostya’ Novoselov
+4 more

Abstract

We assess the potential of two-terminal graphene-hBN-graphene resonant tunneling diodes as high-frequency oscillators, using self-consistent quantum transport and electrostatic simulations to determine the time-dependent response of the diodes in a resonant circuit. We quantify how the frequency and power of the current oscillations depend on the diode and circuit parameters including the doping of the graphene electrodes, device geometry, alignment of the graphene lattices, and the circuit impedances. Our results indicate that current oscillations with frequencies of up to several hundred GHz should be achievable.

How to cite this publication

Jennifer Gaskell, L. Eaves, Konstantin ‘kostya’ Novoselov, Artem Mishchenko, A. K. Geǐm, T. M. Fromhold, M. T. Greenaway (2015). Graphene-hexagonal boron nitride resonant tunneling diodes as high-frequency oscillators. Applied Physics Letters, 107(10), DOI: 10.1063/1.4930230.

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Publication Details

Type

Article

Year

2015

Authors

7

Datasets

0

Total Files

0

Language

English

Journal

Applied Physics Letters

DOI

10.1063/1.4930230

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