Study of extraordinary scattering of evanescent waves by the discrete sources method
Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki, Tome 51 (2011) no. 9, pp. 1712-1720 Cet article a éte moissonné depuis la source Math-Net.Ru

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The discrete sources method was adapted to analyze the scattering properties of particles located on a layered substrate. Resonances of the scattering cross section near the total internal reflection angles were detected in a numerical experiment. It was shown that the resonance amplitude can be controlled via an additional thin transparent layer deposited on the film.
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N. V. Grishina; Yu. A. Eremin; A. G. Sveshnikov. Study of extraordinary scattering of evanescent waves by the discrete sources method. Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki, Tome 51 (2011) no. 9, pp. 1712-1720. http://geodesic.mathdoc.fr/item/ZVMMF_2011_51_9_a11/

[1] Raether H., Surface plasmons on smooth and rough surfaces and on gratings, Springer, Berlin, 1988

[2] Maier S., Plasmonics: fundamentals and applications, Springer, Berlin, 2007

[3] Bharadwaj P., Deutsch B., Novotny L., “Optical antennas”, Adv. Opt. Photon, 1 (2009), 438–483 | DOI

[4] Abdulhalim I., Zourov M., Lakhtakia A., “Surface plasmon resonance for biosensing”, Electromagnetics, 28 (2008), 214–242 | DOI

[5] Grishina N. V., Eremin Yu. A., Sveshnikov A. G., “Analiz effekta ekstremalnogo prosachivaniya voln cherez provodyaschuyu plenku metodom diskretnykh istochnikov”, Zh. vychisl. matem. i matem. fiz., 49:1 (2009), 90–98 | MR | Zbl

[6] Grishina N. V., Eremin Yu. A., Sveshnikov A. G., “Analiz korrelyatsii plazmonnogo rezonansa s effektom ekstremalnogo prosachivaniya energii metodom diskretnykh istochnikov”, Zh. vychisl. matem. i matem. fiz., 50:3 (2010), 532–538 | MR | Zbl

[7] Eremin Yu. A., Sveshnikov A. G., “Matematicheskie modeli zadach nanooptiki i biofotoniki na osnove metoda diskretnykh istochnikov”, Zh. vychisl. matem. i matem. fiz., 47:2 (2007), 269–287 | MR | Zbl

[8] Dmitriev V. I., Polya v sloistykh sredakh, Izd-vo MGU, M., 1963

[9] Chew W. C., Waves and fields in inhomogeneous media, IEEE Press, New York, 1995 | Zbl