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Optimal Modeling of Infinite Graphene Sheets via a Class of Generalized FDTD Schemes

Authors :
Theodoros D. Tsiboukis
Georgios D. Bouzianas
Nikolaos V. Kantartzis
Christos S. Antonopoulos
Source :
IEEE Transactions on Magnetics. 48:379-382
Publication Year :
2012
Publisher :
Institute of Electrical and Electronics Engineers (IEEE), 2012.

Abstract

The accurate and fully 3-D analysis of graphene surface conductivity models by means of a frequency-dependent finite-difference time-domain method is introduced in this paper. For the infinite sheet to be consistently simulated, the novel technique uses a set of periodic boundary conditions that lead to a unit cell excited with a spectral scheme in terms of a total-field/scattered-field formulation. On the other hand, graphene itself is modeled through a subcell approach and a complex surface conductivity concept defined by quantum mechanical equations. This conductivity model is next converted to a volume one in order to permit a realistic time-domain study. Numerical outcomes, addressing a variety of applications, reveal a promising coincidence with those acquired from analytical closed-form expressions.

Details

ISSN :
19410069 and 00189464
Volume :
48
Database :
OpenAIRE
Journal :
IEEE Transactions on Magnetics
Accession number :
edsair.doi...........2715f2ad1060477cc4521e41168768e6
Full Text :
https://doi.org/10.1109/tmag.2011.2172778