• Victor Farafonov
  • V. I. Ustimov
  • V. B. Il'in
  • M. V. Sokolovskaya

This paper presents an ellipsoidal model that is constructed for small layered nonspherical particles and methods for constructing "effective" multilayer ellipsoids, the light-scattering properties of which would be close to the corresponding properties of original particles. In the case of axisymmetric particles, prolate or oblate spheroids (ellipsoids of revolution) are implied. Numerical calculations of the polarizability and scattering cross sections of small layered nonspherical particles, including nonconfocal (similar) spheroids, Chebyshev particles, and pseudospheroids, are performed by different approximate and rigorous methods. Approximate approaches involve the use of an ellipsoidal model, in which the polarizability of a layered particle is determined in two ways. In the first case, the polarizability is calculated in the approximation of confocal spheroids, while, in the second case, it is sought as a linear combination of the polarizabilities of embedded spheroids proportionally to the volumes of layers. Among rigorous methods, the extended boundary conditions method and the generalized separation of variables method are applied. On the basis of a comparison of the results obtained with rigorous and approximate approaches, their drawbacks and advantages are discussed.

Original languageEnglish
Pages (from-to)237-246
Number of pages10
JournalOPTICS AND SPECTROSCOPY
Volume124
Issue number2
DOIs
StatePublished - 1 Feb 2018

    Research areas

  • ELECTROMAGNETIC SCATTERING, RAYLEIGH APPROXIMATION, LIGHT-SCATTERING, REFERENCE DATABASE, APPLICABILITY, OBJECTS

    Scopus subject areas

  • Electronic, Optical and Magnetic Materials
  • Atomic and Molecular Physics, and Optics

ID: 34871017