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- W2784666009 endingPage "230" @default.
- W2784666009 startingPage "101" @default.
- W2784666009 abstract "The methods to describe electromagnetic wave interaction with random and highly ordered particulate media as applied to solve problems of optics, photonics, and optoelectronics are presented. The approach to find spatial arrangement of particles forming the planar crystal with imperfect lattice is described. It is used to simulate light absorption by the solar cells and transmittance of antireflecion coatings, selective reflectors, multispectral filters based on periodic, quasiperiodic and aperiodic structures of monolayers; to solve the inverse scattering problem—retrieving the refractive index of particles forming the 3D photonic crystal. A number of scattering problem solutions for partially ordered particulate layers is considered. In particular: angular distribution of light scattered by monolayer, small-angle light scattering and transmission by polymer dispersed liquid crystal film, quenching effect for coherent component of transmitted light, and the spatial optical noise. Features in scattering and transmittance by correlated particles in liquating glasses are explained." @default.
- W2784666009 created "2018-02-02" @default.
- W2784666009 creator A5022489200 @default.
- W2784666009 creator A5041963621 @default.
- W2784666009 date "2018-01-01" @default.
- W2784666009 modified "2023-09-27" @default.
- W2784666009 title "Multiple Scattering of Light in Ordered Particulate Media" @default.
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