Mathematics (Dec 2021)

Mathematical Modeling of the Electrophysical Properties of a Layered Nanocomposite Based on Silicon with an Ordered Structure

  • Sergey Korchagin,
  • Ekaterina Romanova,
  • Denis Serdechnyy,
  • Petr Nikitin,
  • Vil Baiburin,
  • Yerbol Yerbayev

DOI
https://doi.org/10.3390/math9243167
Journal volume & issue
Vol. 9, no. 24
p. 3167

Abstract

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The authors carried out modeling of the electrophysical properties of composite media. The frequency dependences of the dielectric constant on the type of inclusions in the composite are investigated. On the basis of the nanocomposite considered in the work, based on Si, B, and SiO2, the authors model a reflecting screen, the lattice elements of which have a layered hierarchically constructed structure similar to a fractal formation. The influence of the level of fractality on the optical properties of the object was also investigated, and it was found that the proposed structure makes it possible to increase the operating frequency range of the reflecting screen and the efficiency, in comparison with reflecting screens that have a lattice of traditional structure. The results obtained can be of practical interest for broadband and nonlinear radar devices, localization devices and mobile objects, microelectronics, as well as intelligent applications in the field of information security.

Keywords