DocumentCode :
241292
Title :
Space-domain method of moments for graphene nanoribbons
Author :
Burghignoli, P. ; Araneo, Rodolfo ; Lovat, G. ; Hanson, George
Author_Institution :
Dept. of Inf. Eng., Electron. & Telecommun., Sapienza Univ. of Rome, Rome, Italy
fYear :
2014
fDate :
6-11 April 2014
Firstpage :
666
Lastpage :
669
Abstract :
A space-domain formulation of the method of moments is presented for the modal analysis of graphene nanoribbons (GNRs). Starting from a full spectral representation of graphene conductivity, recently obtained in a semiclassical framework using the Bhatnagar-Gross-Krook approximation of the Boltzmann transport equation, an approximate spacedomain integro-differential equation is derived for the current density on a GNR, valid in the limit of low wavenumbers. The equation is then discretized with the method of moments adopting subsectional basis functions and enforcing the correct behavior of the transverse current at the edges. The resulting formulation allows for an effective treatment of both single and multiple GNRs as well as for inclusion of a spatially varying carrier density. Comparisons are presented with results obtained with an in-house code based on a spectral-domain formulation that incorporates exactly the effect of edges within the nonlocal graphene model.
Keywords :
Boltzmann equation; current density; graphene; method of moments; modal analysis; nanoribbons; Bhatnagar-Gross-Krook approximation; Boltzmann transport equation; GNR; current density; graphene conductivity; graphene nanoribbons; modal analysis; space-domain formulation; space-domain method of moments; spacedomain integro-differential equation; Antennas; Conductivity; Dispersion; Equations; Graphene; Mathematical model; Method of moments; Graphene; method of moments; nanoribbon;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Antennas and Propagation (EuCAP), 2014 8th European Conference on
Conference_Location :
The Hague
Type :
conf
DOI :
10.1109/EuCAP.2014.6901847
Filename :
6901847
Link To Document :
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