Detail publikace

Application of a Generalized Matrix Averaging Method for the Calculation of the Effective Properties of Thin Multiferroic Layers

STARKOV, A. STARKOV, I.

Originální název

Application of a Generalized Matrix Averaging Method for the Calculation of the Effective Properties of Thin Multiferroic Layers

Typ

článek v časopise ve Web of Science, Jimp

Jazyk

angličtina

Originální abstrakt

It is proposed to use a generalized matrix averaging (GMA) method for calculating the parameters of an effective medium with physical properties equivalent to those of a set of thin multiferroic layers. This approach obviates the need to solve a complex system of magnetoelectroelasticity equations. The required effective characteristics of a system of multiferroic layers are obtained using only operations with matrices, which significantly simplifies calculations and allows multilayer systems to be described. The proposed approach is applicable to thin layer systems, in which the total thickness is much less than the system length, radius of curvature, and wavelengths of waves that can propagate in the system (long wave approximation). Using the GMA method, it is also possible to obtain the effective characteristics of a periodic structure with each period comprising a number of thin multiferroic layers.

Klíčová slova

Multiferroic Layers Generalized Matrix Averaging Method Homogenezation

Autoři

STARKOV, A.; STARKOV, I.

Rok RIV

2014

Vydáno

16. 12. 2014

ISSN

1063-7761

Periodikum

JOURNAL OF EXPERIMENTAL AND THEORETICAL PHYSICS

Ročník

119

Číslo

5

Stát

Ruská federace

Strany od

861

Strany do

869

Strany počet

9

BibTex

@article{BUT111936,
  author="A.S. {Starkov} and Ivan {Starkov}",
  title="Application of a Generalized Matrix Averaging Method for the Calculation of the Effective Properties of Thin Multiferroic Layers",
  journal="JOURNAL OF EXPERIMENTAL AND THEORETICAL PHYSICS",
  year="2014",
  volume="119",
  number="5",
  pages="861--869",
  doi="10.1134/S1063776114110120",
  issn="1063-7761"
}