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Optical excitation of surface plasmon polariton and waveguide modes resonances on prismatic structures

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The prismatic structures for excitation surface plasmon polariton and waveguide modes resonances were investigated. The first structure consists of a glass prism and thin metallic layer deposited on the prism. The second one includes an additional dielectric layer. Plasmon polariton resonance can be observed only for TM polarization at finely tuned structure parameters. Waveguide modes resonance is possible for both polarizations in the presence of the dielectric layer. We show that the first structure has the highest sensitivity of angle minimum reflectivity, whereas the second one has the highest reflectivity sensitivity to the probed liquid refractive index changes.
Czasopismo
Rocznik
Strony
929--939
Opis fizyczny
Bibliogr. 15 poz.
Twórcy
autor
autor
autor
  • Department of Photonics, Lviv Polytechnic National University, Stepan Bandera 12, 73013 Lviv, Ukraine
Bibliografia
  • [1] AGRANOVICH V.M., MILLSA D.L., [Eds.], Surface Polaritons: Electromagnetic Waves on the Surfaces and Interfaces of the Mediums, Nauka, 1985, (in Russian).
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  • [4] FITIO V.M., LABA H.P., BOBITSKI YA.V., Absorption of the electromagnetic waves at the plasmon resonance by the periodical structures and thin metallic film at the prism excitation, Radiofizika and Elektronika 12(1), 2007, pp. 223–229, (in Russian).
  • [5] SNOPOK B.A., KOSTYUKEVICH K.V., LYSENKO S.I., LYTVYN P.M., LYTVYN O.S., MAMYKIN S.V.,ZYNYO S.A., SHEPELYAVYJ P.E., VENGER E.F., KOSTYUKEVICH S.A., SHIRSHOV YU.M., Optical biosensors based on the surface plasmon resonance phenomenon: Optimization of the metal layer parameters, Semiconductor Physics, Quantum Electronics and Optoelectronics 4(1), 2001, pp. 56–69.
  • [6] SHIRWOV YU.M., CHEGEL V.I., POPERENKO L.V., SKORYNSKI V.V., Determination of the refractive index of the water liquid by surface plasmon-polaritons method, Bulletin of T. Shevchenko National University 6, 2004, pp. 37–40, (in Ukrainian).
  • [7] RAN B., LIPSON S.G., Comparison between sensitive of phase and intensity detection in surface plasmon resonance, Optics Express 14(12), 2006, pp. 5641–5650.
  • [8] YANG JIAO, WEISS S.M., Design parameters and sensitivity analysis of polymer-cladded porous silicon waveguides for small molecule detection, Biosensors and Bioelectronics 25(6), 2010,pp. 1535–1538.
  • [9] AWAZU K., ROCKSTUHL C., FUDJIMAKI M., FUKUDA N., TOMINAGA J., KOMATSUBARA T., IKEDA T.,OHKI Y., High sensitivity sensor made of perforated waveguides, Optics Express 15(5), 2007,pp. 2592–2597.
  • [10] KATS A.V., NESTEROV M.L., NIKITIN A.YU., Excitation of surface plasmon-polaritons in metal films with double periodic modulation: Anomalous optical effects, Physical Review B 76(4), 2007, p. 045413
  • [11] DOBROWOLSKI J.A., Optical properties of film and coatings, [In] Handbook of Optics, Bass M.,Vol. 1, Chapter 12, McGraw-Hill, New York, 1995.
  • [12] JOHNSON P.B., CHRISTY R.W., Optical constant of the noble metals, Physical Review B 6(12), 1972, pp. 4370–4379.
  • [13] TREACY M.M.J., Dynamical diffraction explanation of the anomalous transmission of light through metallic gratings, Physical Review B 66(19), 2002, p. 195105.
  • [14] KOVALENKO S.A., FEDOROVYCH R.D., Optical properties of thin gold film, Semiconductor Physics, Quantum Electronics and Optoelectronics 3(3), 2000, pp. 383–388.
  • [15] DMYTRUK M.L., KONDRATENKO O.S., KOVALENKO S.A., MAMONTOVA I.B., Classic and topology size effects in optical properties of gold thin-films, Physics and Chemistry of Solid State 7(1), 2006,pp. 39–44, (in Ukrainian).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW7-0019-0051
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