Search Results - "Leskova, T A"

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  1. 1

    Single-mode Er-doped fiber random laser with distributed Bragg grating feedback by Lizárraga, N, Puente, N P, Chaikina, E I, Leskova, T A, Méndez, E R

    Published in Optics express (19-01-2009)
    “…We report the implementation of a one-dimensional random laser based on an Er/Ge co-doped single-mode fiber with randomly spaced Bragg gratings. The random…”
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    Surface plasmon polariton propagation near an index step by Leskova, T.A., Maradudin, A.A., Zierau, W.

    Published in Optics communications (01-05-2005)
    “…In this work, we study theoretically the scattering of p-polarized light of frequency ω from, and its transmission through, a system consisting of a dielectric…”
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    Conical propagation of a surface polariton across a grating by Kretschmann, M., Leskova, T.A., Maradudin, A.A.

    Published in Optics communications (15-01-2003)
    “…By the use of the homogeneous form of the reduced Rayleigh equation for the electromagnetic field above and on a two-dimensional rough surface we obtain the…”
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  6. 6

    Nanogroove array on thin metallic film as planar lens with tunable focusing by Wellems, L. David, Huang, Danhong, Leskova, T.A., Maradudin, A.A.

    Published in Physics letters. A (02-01-2012)
    “…Numerical results for the distributions of light transmitted through metallic planar lenses composed of symmetric nanogroove arrays on the surfaces of a gold…”
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  7. 7

    The surface enhanced second harmonic generation of light from a randomly rough metal surface in the Kretschmann geometry by Leskova, T.A., Leyva-Lucero, M., Méndez, E.R., Maradudin, A.A., Novikov, I.V.

    Published in Optics communications (15-09-2000)
    “…We present results of perturbative calculations of the second harmonic light generated in the transmission of p-polarized light through a thin metal film with…”
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  8. 8

    The design of one-dimensional randomly rough surfaces that act as Collett–Wolf sources by Leskova, T.A., Maradudin, A.A., Muñoz-Lopez, J.

    Published in Optics communications (26-11-2004)
    “…A method is presented for designing a one-dimensional perfectly conducting randomly rough surface which, when illuminated at normal incidence by an s-polarized…”
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  9. 9

    Interference of a pair of symmetric partially coherent beams by García-Guerrero, E E, Méndez, E R, Gu, Zu-Han, Leskova, T A, Maradudin, A A

    Published in Optics express (01-03-2010)
    “…We study theoretically and experimentally the interference of light produced by a pair of mutually correlated Schell-model sources. The spatial distributions…”
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  10. 10

    Resonant scattering of electromagnetic waves from a rectangular groove on a perfectly conducting surface by Maradudin, A.A., Shchegrov, A.V., Leskova, T.A.

    Published in Optics communications (15-02-1997)
    “…The frequencies of the electromagnetic surface shape resonances of both p- and s-polarizations associated with a rectangular groove on the otherwise planar…”
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    Destructive interference effects in the second harmonic light generated at randomly rough metal surfaces by Leyva-Lucero, M., Méndez, E.R., Leskova, T.A., Maradudin, A.A.

    Published in Optics communications (01-03-1999)
    “…We study theoretically the generation and scattering of second harmonic light at randomly rough metallic interfaces. For surfaces with relatively large…”
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  12. 12

    Specular and diffuse scattering of light from two-dimensional randomly rough metal surfaces: experimental and theoretical results by Navarrete Alcalá, A.G., Chaikina, E.I., Méndez, E.R., Leskova, T.A., Maradudin, A.A.

    Published in Waves in random and complex media (01-11-2009)
    “…We compare experimental results for s- and p-polarized light scattered specularly and diffusely from two-dimensional randomly rough metal surfaces with the…”
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  13. 13

    Negative refraction of a surface plasmon polariton by Leskova, T.A., Maradudin, A.A.

    Published in Metamaterials (01-12-2010)
    “…▶ A simple planar surface structure is described that refracts negatively a surface plasmon polariton incident on it. ▶ The negative refraction can occur for…”
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  14. 14

    Synthetic spectra from rough surface scattering by Leskova, T. A., Maradudin, A. A., Zierau, W.

    Published in Waves in random and complex media (01-11-2006)
    “…We describe a method for designing a one-dimensional randomly rough surface that scatters light at a fixed angle of scattering with an intensity that depends…”
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    Surface solitons due to second order cascaded nonlinearity by Agranovich, V.M., Basko, D.M., Boardman, A.D., Kamchatnov, A.M., Leskova, T.A.

    Published in Optics communications (01-02-1999)
    “…In this paper we show theoretically that cascaded surface solitons can exist on the surface of a medium with the bulk inversion symmetry center. Although in…”
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    Coherence of light scattered from a randomly rough surface by Leskova, T A, Maradudin, A A, Munõz-Lopez, J

    “…We study the coherence of p-polarized light scattered from a one-dimensional weakly rough random metal surface in contact with vacuum. The mutual coherence…”
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    Design of one-dimensional random surfaces with specified scattering properties by Méndez, E. R., Garcı́a-Guerrero, E. E., Leskova, T. A., Maradudin, A. A., Muñoz-López, J., Simonsen, I.

    Published in Applied physics letters (29-07-2002)
    “…We propose a method for designing a one-dimensional random perfectly conducting surface which, when illuminated by a plane wave, scatters it with a prescribed…”
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    Localization of surface plasmon polaritons on a random surface by Maradudin, A.A., Simonsen, I., Leskova, T.A., Méndez, E.R.

    Published in Physica. B, Condensed matter (01-02-2001)
    “…We study the possibility of the strong localization of surface plasmon polaritons propagating along a metal surface a finite part of which is randomly rough…”
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  20. 20

    Weak-localization effects in the generation of second harmonics of the light at a randomly rough vacuum-metal grating by MCGURN, A. R, LESKOVA, T. A, AGRANOVICH, V. M

    Published in Physical review. B, Condensed matter (15-11-1991)
    “…The diffuse component of second-harmonic light (frequency 2 omega ) generated at a weakly rough vacuum-metal grating (e.g. Ag) through the interaction of…”
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