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Computer Optics, 2014, Volume 38, Issue 1, Pages 20–27 (Mi co306)  

OPTO-IT

Joint finite-difference solution of the D’Alembert and Maxwell’s equations. Two-dimensional case

D. L. Golovashkina, E. Yu. Buldyginb, L. V. Yablokovab

a Image Processing Systems Institute of the Russian Academy of Sciences
b S.P. Korolyov Samara State Aerospace University (National Research University)

Abstract: The technique of searching of the collateral finite-difference solution of a wave equation and set of equations of Maxwell is offered, allowing to combine advantage and to avoid shortcomings of both made mention numerical methods of nanophotonics (to reduce expenses of memory and to apply well-known TF/SF and PML techniques). In a two-dimensional case on test examples convergence of such decision, possibility of imposing of PML-ayers and a task of an incident wave on the TF/SF technology are shown.

Keywords: D’Alembert equation, Maxwell’s equations, difference scheme, PML-layer, TF/SF technique.

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Full text: http://www.computeroptics.smr.ru/.../380103.html
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Received: 29.11.2013

Citation: D. L. Golovashkin, E. Yu. Buldygin, L. V. Yablokova, “Joint finite-difference solution of the D’Alembert and Maxwell’s equations. Two-dimensional case”, Computer Optics, 38:1 (2014), 20–27

Citation in format AMSBIB
\Bibitem{GolBulYab14}
\by D.~L.~Golovashkin, E.~Yu.~Buldygin, L.~V.~Yablokova
\paper Joint finite-difference solution of the D’Alembert and Maxwell’s equations. Two-dimensional case
\jour Computer Optics
\yr 2014
\vol 38
\issue 1
\pages 20--27
\mathnet{http://mi.mathnet.ru/co306}


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