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ISSN: 1023-5086

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ISSN: 1023-5086

Scientific and technical

Opticheskii Zhurnal

A full-text English translation of the journal is published by Optica Publishing Group under the title “Journal of Optical Technology”

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УДК: 535.36

Light scattering by small axisymmetric particles using a generalized method of separation of variables with a spherical basis

For Russian citation (Opticheskii Zhurnal):

Фарафонов В.Г., Ильин В.Б., Винокуров А.А., Барканов С.В. Рассеяние света малыми осесимметричными частицами с использованием обобщенного метода разделения переменных со сферическим базисом // Оптический журнал. 2011. Т. 78. № 8. С. 100–108.

 

Farafonov V.G., Iliin V.B., Vinokurov A.A., Barkanov S.V. Light scattering by small axisymmetric particles using a generalized method of separation of variables with a spherical basis [in Russian] // Opticheskii Zhurnal. 2011. V. 78. № 8. P. 100–108.

For citation (Journal of Optical Technology):

V. G. Farafonov, V. B. Il’in, A. A. Vinokurov, and S. V. Barkanov, "Light scattering by small axisymmetric particles using a generalized method of separation of variables with a spherical basis," Journal of Optical Technology. 78(8), 544-550 (2011). https://doi.org/10.1364/JOT.78.000544

Abstract:

This paper discusses the problem of light scattering by an arbitrary axisymmetric particle in the electrostatic approximation. Since the wave number is assumed to equal zero, instead of Maxwell’s equations in the framework of the method of separation of variables, Laplace’s equation for scalar potentials or an equivalent integral equation was solved in the framework of the method of expanded boundary conditions, which in essence is a version of the separation-of-variables method. These approaches made it possible to find rigorous solutions of the problem for axisymmetric particles. On the assumption of a constant field inside the particle, an approximate solution that coincides with the exact solution in the case of ellipsoids was also constructed. Numerical calculations showed that the Rayleigh approximation subsequently constructed works well in a wide range of values of the parameters of the problem and gives satisfactory agreement with the results of calculations by the rigorous methods of scattering theory.

Keywords:

light scattering theory, electrostatic approximation

Acknowledgements:

The research was partly supported by RFBR (project No. 10-02-00593-a).

OCIS codes: 290.5825, 290.5870

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