We propose a novel finite-difference beam propagation method capable of dealing with the discontinuity of the tangential component of the magnetic field induced by bidimensional graphene layers, which can be arbitrarily placed within dielectric media. In stark contrast with conventional numerical solvers, this approach does not require a discretization step as small as a fraction of the atomic thickness of graphene, allowing ultrafast simulation times. The validity of the method is proved by propagating the plasmonic supermodes of two coupled graphene layers, and the evaluated beat length exhibits excellent agreement with respect to analytical results.

Finite-Difference Beam Propagation Method for Graphene-Based Devices

LOCATELLI, Andrea;DE ANGELIS, Costantino;
2014-01-01

Abstract

We propose a novel finite-difference beam propagation method capable of dealing with the discontinuity of the tangential component of the magnetic field induced by bidimensional graphene layers, which can be arbitrarily placed within dielectric media. In stark contrast with conventional numerical solvers, this approach does not require a discretization step as small as a fraction of the atomic thickness of graphene, allowing ultrafast simulation times. The validity of the method is proved by propagating the plasmonic supermodes of two coupled graphene layers, and the evaluated beat length exhibits excellent agreement with respect to analytical results.
2014
Ateneo di appartenenza
PE2_9 Optics, non-linear optics and nano-optics
PE7_5 Micro- and nanoelectronics, optoelectronics
PE7_2 Electrical and electronic engineering: semiconductors, components, systems
Esperti anonimi
Inglese
Internazionale
ELETTRONICO
26
10
1007
1010
4
Graphene; BPM; Finite-difference; Coupler
5
info:eu-repo/semantics/article
262
Capobianco, A. D.; Locatelli, Andrea; DE ANGELIS, Costantino; Boscolo, S.; Midrio, M.
1 Contributo su Rivista::1.1 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11379/336506
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