Full-Wave Techniques for the Analysis of Electrodynamics and Coherent Quantum Transport in Graphene Nanodevices.

We report on full-wave techniques in the frequency (energy)-domain and the time-domain, aimed at the investigation of the combined electromagnetic-coherent transport problem in carbon based nanostructured materials and devices viz. graphene nanoribbons. The frequency-domain approach is introduced in...

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Main Author: Luca Pierantoni
Format: Article
Language:English
Published: Applied Science Innovations Private Limited 2012-11-01
Series:Carbon: Science and Technology
Subjects:
Online Access:http://www.applied-science-innovations.com/cst-web-site/CST-4-1/CST%20-%2055.pdf
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author Luca Pierantoni
author_facet Luca Pierantoni
author_sort Luca Pierantoni
collection DOAJ
description We report on full-wave techniques in the frequency (energy)-domain and the time-domain, aimed at the investigation of the combined electromagnetic-coherent transport problem in carbon based nanostructured materials and devices viz. graphene nanoribbons. The frequency-domain approach is introduced in order to describe a Poisson-Schrödinger / Dirac system in a quasi static framework. Thetime-domain approach deals with the full-wave solution of the combined Maxwell-Schrödinger / Dirac system of equations. From the above theoretical platforms, home-made solvers are provided, aimed atdealing with challenging problems in realistic devices / systems environments, typical of the area of radio-frequency nanoelectronics.
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spelling doaj.art-23307268b76b40bd8dd256588c60fdcd2022-12-21T18:10:17ZengApplied Science Innovations Private LimitedCarbon: Science and Technology0974-05462012-11-0141167176Full-Wave Techniques for the Analysis of Electrodynamics and Coherent Quantum Transport in Graphene Nanodevices.Luca PierantoniWe report on full-wave techniques in the frequency (energy)-domain and the time-domain, aimed at the investigation of the combined electromagnetic-coherent transport problem in carbon based nanostructured materials and devices viz. graphene nanoribbons. The frequency-domain approach is introduced in order to describe a Poisson-Schrödinger / Dirac system in a quasi static framework. Thetime-domain approach deals with the full-wave solution of the combined Maxwell-Schrödinger / Dirac system of equations. From the above theoretical platforms, home-made solvers are provided, aimed atdealing with challenging problems in realistic devices / systems environments, typical of the area of radio-frequency nanoelectronics.http://www.applied-science-innovations.com/cst-web-site/CST-4-1/CST%20-%2055.pdfGrapheneQuantum Coherent TransportElectrodynamics
spellingShingle Luca Pierantoni
Full-Wave Techniques for the Analysis of Electrodynamics and Coherent Quantum Transport in Graphene Nanodevices.
Carbon: Science and Technology
Graphene
Quantum Coherent Transport
Electrodynamics
title Full-Wave Techniques for the Analysis of Electrodynamics and Coherent Quantum Transport in Graphene Nanodevices.
title_full Full-Wave Techniques for the Analysis of Electrodynamics and Coherent Quantum Transport in Graphene Nanodevices.
title_fullStr Full-Wave Techniques for the Analysis of Electrodynamics and Coherent Quantum Transport in Graphene Nanodevices.
title_full_unstemmed Full-Wave Techniques for the Analysis of Electrodynamics and Coherent Quantum Transport in Graphene Nanodevices.
title_short Full-Wave Techniques for the Analysis of Electrodynamics and Coherent Quantum Transport in Graphene Nanodevices.
title_sort full wave techniques for the analysis of electrodynamics and coherent quantum transport in graphene nanodevices
topic Graphene
Quantum Coherent Transport
Electrodynamics
url http://www.applied-science-innovations.com/cst-web-site/CST-4-1/CST%20-%2055.pdf
work_keys_str_mv AT lucapierantoni fullwavetechniquesfortheanalysisofelectrodynamicsandcoherentquantumtransportingraphenenanodevices