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Original Articles

Statistical distribution of the field scattered by rough layered interfaces: formulae derived from the small perturbation method

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Pages 1-22 | Received 10 Apr 2009, Accepted 11 Sep 2009, Published online: 15 Jan 2010

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R. de Oliveira, R. Dusséaux & S. Afifi. (2010) Analytical derivation of the stationarity and the ergodicity of a field scattered by a slightly rough random surface. Waves in Random and Complex Media 20:3, pages 396-418.
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Articles from other publishers (7)

Seloua El-Bah, Richard Dusseaux & Saddek Afifi. (2016) Some Statistical and Spatial Properties of Signal Scattering by 2-D Slightly Rough Random Surfaces. IEEE Transactions on Antennas and Propagation 64:2, pages 721-729.
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Saddek Afifi, Richard Dusseaux & Abla Berrouk. (2014) Electromagnetic Scattering From 3D Layered Structures With Randomly Rough Interfaces: Analysis With the Small Perturbation Method and the Small Slope Approximation. IEEE Transactions on Antennas and Propagation 62:10, pages 5200-5208.
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Abla Berrouk, Richard Dusseaux & Saddek Afifi. (2014) ELECTROMAGNETIC WAVE SCATTERING FROM ROUGH LAYERED INTERFACES: ANALYSIS WITH THE SMALL PERTURBATION METHOD AND THE SMALL SLOPE APPROXIMATION. Progress In Electromagnetics Research B 57, pages 177-190.
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Saddek Afifi & Richard Dusseaux. (2012) Scattering by Anisotropic Rough Layered 2D Interfaces. IEEE Transactions on Antennas and Propagation 60:11, pages 5315-5328.
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Saddek Afifi & Richard Dusseaux. (2012) On the Co-Polarized Scattered Intensity Ratio of Rough Layered Surfaces: The Probability Law Derived From the Small Perturbation Method. IEEE Transactions on Antennas and Propagation 60:4, pages 2133-2138.
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Saddek Afifi & Richard Dusseaux. (2011) On the Co-Polarized Phase Difference of Rough Layered Surfaces: Formulae Derived From the Small Perturbation Method. IEEE Transactions on Antennas and Propagation 59:7, pages 2607-2618.
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Saddek Afifi & Richard Dusséaux. (2010) Statistical study of radiation loss from planar optical waveguides: The curvilinear coordinate method and the small perturbation method. Journal of the Optical Society of America A 27:5, pages 1171.
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