Next Article in Journal
Development of a Fractional Order Chaos Synchronization Dynamic Error Detector for Maximum Power Point Tracking of Photovoltaic Power Systems
Previous Article in Journal
Conformance Testing of SGSF-064-1 Using CANoe
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Article

A New Mechanism for THz Detection Based on the Tunneling Effect in Bi-Layer Graphene Nanoribbons

by
Antonio Maffucci
1,2
1
Department of Electrical and Information Engineering, University of Cassino and Southern Lazio, via G. Di Biasio 43, Cassino 03043, Italy
2
National Institute for Nuclear Physics, INFN, via E. Fermi 10, Frascati 00044, Italy
Appl. Sci. 2015, 5(4), 1102-1116; https://doi.org/10.3390/app5041102
Submission received: 14 October 2015 / Revised: 27 October 2015 / Accepted: 3 November 2015 / Published: 12 November 2015
(This article belongs to the Section Nanotechnology and Applied Nanosciences)

Abstract

A new possible mechanism of signal detection in the THz range is investigated, based on the excitation of resonances due to the tunneling effect between two graphene nanoribbons. A simple detector is proposed, where two graphene nanoribbons are used to contact two copper electrodes. The terminal voltages are shown to exhibit strong resonances when the frequency of an external impinging field is tuned to the characteristic tunneling frequency of the graphene layer pair. An electrodynamic model for the electron transport along the graphene nanoribbons is extended here to include the tunneling effect, and a coupled transmission line model is finally derived. This model is able to predict not only the tunneling resonance, but also the well-known plasmon resonances, related to the propagation of slow surface waves.
Keywords: graphene; graphene nanoribbons; terahertz electronics; tunneling effect graphene; graphene nanoribbons; terahertz electronics; tunneling effect
Graphical Abstract

Share and Cite

MDPI and ACS Style

Maffucci, A. A New Mechanism for THz Detection Based on the Tunneling Effect in Bi-Layer Graphene Nanoribbons. Appl. Sci. 2015, 5, 1102-1116. https://doi.org/10.3390/app5041102

AMA Style

Maffucci A. A New Mechanism for THz Detection Based on the Tunneling Effect in Bi-Layer Graphene Nanoribbons. Applied Sciences. 2015; 5(4):1102-1116. https://doi.org/10.3390/app5041102

Chicago/Turabian Style

Maffucci, Antonio. 2015. "A New Mechanism for THz Detection Based on the Tunneling Effect in Bi-Layer Graphene Nanoribbons" Applied Sciences 5, no. 4: 1102-1116. https://doi.org/10.3390/app5041102

APA Style

Maffucci, A. (2015). A New Mechanism for THz Detection Based on the Tunneling Effect in Bi-Layer Graphene Nanoribbons. Applied Sciences, 5(4), 1102-1116. https://doi.org/10.3390/app5041102

Article Metrics

Back to TopTop