The Experts below are selected from a list of 29652 Experts worldwide ranked by ideXlab platform
M A Noginov - One of the best experts on this subject based on the ideXlab platform.
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compensation of loss in propagating surface plasmon polariton by gain in adjacent Dielectric Medium
2008Co-Authors: M A Noginov, M Bahoura, J Adegoke, Brandon Ritzo, Viktor A Podolskiy, M Mayy, K ReynoldsAbstract:We report the suppression of loss of surface plasmon polariton propagating at the interface between silver film and optically pumped polymer with dye. The large magnitude of the effect enables a variety of applications of ‘active’ nanoplasmonics. The experimental study is accompanied by the analytical description of the phenomenon. In particular, we resolve the controversy regarding the direction of the wavevector of a wave with a strong evanescent component in an active Medium.
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compensation of loss in propagating surface plasmon polariton by gain in adjacent Dielectric Medium
2007Co-Authors: M A Noginov, G Zhu, M Bahoura, J Adegoke, Brandon Ritzo, Viktor A Podolskiy, M Mayy, K ReynoldsAbstract:We report the suppression of loss of surface plasmon polariton propagating at the interface between silver film and optically pumped polymer with dye. Large magnitude of the effect enables a variety of applications of "active" nanoplasmonics. The experimental study is accompanied by the development of the analytical description of the phenomenon and the solution of the controversy regarding the direction of the wavevector of a wave with a strong evanescent component in an active Medium.
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enhancement of surface plasmons in an ag aggregate by optical gain in a Dielectric Medium
2006Co-Authors: M A Noginov, G Zhu, M Bahoura, J Adegoke, C Small, Brandon Ritzo, Vladimir P Drachev, Vladimir M ShalaevAbstract:We have observed the compensation of loss in a metal by a gain in a Dielectric Medium in the mixture of an Ag aggregate and a Rhodamine 6G dye. The demonstrated sixfold enhancement of the Rayleigh scattering is the evidence of the enhancement of the surface-plasmon resonance. The reported experimental observation facilitates many applications of nanoplasmonics.
K Reynolds - One of the best experts on this subject based on the ideXlab platform.
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compensation of loss in propagating surface plasmon polariton by gain in adjacent Dielectric Medium
2008Co-Authors: M A Noginov, M Bahoura, J Adegoke, Brandon Ritzo, Viktor A Podolskiy, M Mayy, K ReynoldsAbstract:We report the suppression of loss of surface plasmon polariton propagating at the interface between silver film and optically pumped polymer with dye. The large magnitude of the effect enables a variety of applications of ‘active’ nanoplasmonics. The experimental study is accompanied by the analytical description of the phenomenon. In particular, we resolve the controversy regarding the direction of the wavevector of a wave with a strong evanescent component in an active Medium.
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compensation of loss in propagating surface plasmon polariton by gain in adjacent Dielectric Medium
2007Co-Authors: M A Noginov, G Zhu, M Bahoura, J Adegoke, Brandon Ritzo, Viktor A Podolskiy, M Mayy, K ReynoldsAbstract:We report the suppression of loss of surface plasmon polariton propagating at the interface between silver film and optically pumped polymer with dye. Large magnitude of the effect enables a variety of applications of "active" nanoplasmonics. The experimental study is accompanied by the development of the analytical description of the phenomenon and the solution of the controversy regarding the direction of the wavevector of a wave with a strong evanescent component in an active Medium.
M Bahoura - One of the best experts on this subject based on the ideXlab platform.
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compensation of loss in propagating surface plasmon polariton by gain in adjacent Dielectric Medium
2008Co-Authors: M A Noginov, M Bahoura, J Adegoke, Brandon Ritzo, Viktor A Podolskiy, M Mayy, K ReynoldsAbstract:We report the suppression of loss of surface plasmon polariton propagating at the interface between silver film and optically pumped polymer with dye. The large magnitude of the effect enables a variety of applications of ‘active’ nanoplasmonics. The experimental study is accompanied by the analytical description of the phenomenon. In particular, we resolve the controversy regarding the direction of the wavevector of a wave with a strong evanescent component in an active Medium.
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compensation of loss in propagating surface plasmon polariton by gain in adjacent Dielectric Medium
2007Co-Authors: M A Noginov, G Zhu, M Bahoura, J Adegoke, Brandon Ritzo, Viktor A Podolskiy, M Mayy, K ReynoldsAbstract:We report the suppression of loss of surface plasmon polariton propagating at the interface between silver film and optically pumped polymer with dye. Large magnitude of the effect enables a variety of applications of "active" nanoplasmonics. The experimental study is accompanied by the development of the analytical description of the phenomenon and the solution of the controversy regarding the direction of the wavevector of a wave with a strong evanescent component in an active Medium.
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enhancement of surface plasmons in an ag aggregate by optical gain in a Dielectric Medium
2006Co-Authors: M A Noginov, G Zhu, M Bahoura, J Adegoke, C Small, Brandon Ritzo, Vladimir P Drachev, Vladimir M ShalaevAbstract:We have observed the compensation of loss in a metal by a gain in a Dielectric Medium in the mixture of an Ag aggregate and a Rhodamine 6G dye. The demonstrated sixfold enhancement of the Rayleigh scattering is the evidence of the enhancement of the surface-plasmon resonance. The reported experimental observation facilitates many applications of nanoplasmonics.
J Adegoke - One of the best experts on this subject based on the ideXlab platform.
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compensation of loss in propagating surface plasmon polariton by gain in adjacent Dielectric Medium
2008Co-Authors: M A Noginov, M Bahoura, J Adegoke, Brandon Ritzo, Viktor A Podolskiy, M Mayy, K ReynoldsAbstract:We report the suppression of loss of surface plasmon polariton propagating at the interface between silver film and optically pumped polymer with dye. The large magnitude of the effect enables a variety of applications of ‘active’ nanoplasmonics. The experimental study is accompanied by the analytical description of the phenomenon. In particular, we resolve the controversy regarding the direction of the wavevector of a wave with a strong evanescent component in an active Medium.
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compensation of loss in propagating surface plasmon polariton by gain in adjacent Dielectric Medium
2007Co-Authors: M A Noginov, G Zhu, M Bahoura, J Adegoke, Brandon Ritzo, Viktor A Podolskiy, M Mayy, K ReynoldsAbstract:We report the suppression of loss of surface plasmon polariton propagating at the interface between silver film and optically pumped polymer with dye. Large magnitude of the effect enables a variety of applications of "active" nanoplasmonics. The experimental study is accompanied by the development of the analytical description of the phenomenon and the solution of the controversy regarding the direction of the wavevector of a wave with a strong evanescent component in an active Medium.
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enhancement of surface plasmons in an ag aggregate by optical gain in a Dielectric Medium
2006Co-Authors: M A Noginov, G Zhu, M Bahoura, J Adegoke, C Small, Brandon Ritzo, Vladimir P Drachev, Vladimir M ShalaevAbstract:We have observed the compensation of loss in a metal by a gain in a Dielectric Medium in the mixture of an Ag aggregate and a Rhodamine 6G dye. The demonstrated sixfold enhancement of the Rayleigh scattering is the evidence of the enhancement of the surface-plasmon resonance. The reported experimental observation facilitates many applications of nanoplasmonics.
Brandon Ritzo - One of the best experts on this subject based on the ideXlab platform.
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compensation of loss in propagating surface plasmon polariton by gain in adjacent Dielectric Medium
2008Co-Authors: M A Noginov, M Bahoura, J Adegoke, Brandon Ritzo, Viktor A Podolskiy, M Mayy, K ReynoldsAbstract:We report the suppression of loss of surface plasmon polariton propagating at the interface between silver film and optically pumped polymer with dye. The large magnitude of the effect enables a variety of applications of ‘active’ nanoplasmonics. The experimental study is accompanied by the analytical description of the phenomenon. In particular, we resolve the controversy regarding the direction of the wavevector of a wave with a strong evanescent component in an active Medium.
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compensation of loss in propagating surface plasmon polariton by gain in adjacent Dielectric Medium
2007Co-Authors: M A Noginov, G Zhu, M Bahoura, J Adegoke, Brandon Ritzo, Viktor A Podolskiy, M Mayy, K ReynoldsAbstract:We report the suppression of loss of surface plasmon polariton propagating at the interface between silver film and optically pumped polymer with dye. Large magnitude of the effect enables a variety of applications of "active" nanoplasmonics. The experimental study is accompanied by the development of the analytical description of the phenomenon and the solution of the controversy regarding the direction of the wavevector of a wave with a strong evanescent component in an active Medium.
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enhancement of surface plasmons in an ag aggregate by optical gain in a Dielectric Medium
2006Co-Authors: M A Noginov, G Zhu, M Bahoura, J Adegoke, C Small, Brandon Ritzo, Vladimir P Drachev, Vladimir M ShalaevAbstract:We have observed the compensation of loss in a metal by a gain in a Dielectric Medium in the mixture of an Ag aggregate and a Rhodamine 6G dye. The demonstrated sixfold enhancement of the Rayleigh scattering is the evidence of the enhancement of the surface-plasmon resonance. The reported experimental observation facilitates many applications of nanoplasmonics.