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Polaritons in Nanocomposites of Metal Nanoparticles – Dielectric
Author(s) -
V. V. Yatsyshen,
Irina I. Potapova,
Vyacheslav Shipaev
Publication year - 2019
Publication title -
nbi tehnologii/nbi tehnologii
Language(s) - English
Resource type - Journals
eISSN - 2713-1564
pISSN - 2658-3593
DOI - 10.15688/nbit.jvolsu.2019.2.7
Subject(s) - nanocomposite , dielectric , materials science , nanoparticle , composite material , refractive index , composite number , surface plasmon polariton , permittivity , surface plasmon , nanotechnology , optoelectronics , plasmon
The article studies the main characteristics of surface polaritons in composite nanomaterials. The authors consider composite media such as noble metal nanoparticles randomly distributed in a transparent dielectric matrix and build dispersion curves of polaritons in such nanocomposites. The paper shows calculating optical parameters of the surface polariton for several values of the radius of metal nanoparticles and the nanocomposite filling parameter. The authors also present the calculations of the complex refractive index for polaritons in composites with nanoparticles of different metals. In addition, the authors find the dependences of the real and imaginary parts of the complex refractive index of the nanocomposite on the normalized frequency for membranes with different thicknesses and calculate real and imaginary parts of dielectric constant for waves in several metals. Besides, the article provides an overview of important stages in the study of surface electromagnetic waves. It shows that the variation of the structure materials, size and concentration of nanoparticles opens wide possibilities for controlling the optical properties of composite mediums and their practical application. The considered nanocomposites are artificially created media whose material parameters can be controlled. The first method consists in changing the relative volume of the nanoparticles filling of the dielectric matrix. The second method consists in changing the dielectric constant of the nanocomposite matrix. The authors emphasize that the dielectric constant of the nanocomposite in this case acquires resonant properties in contrast to the permeability of the nanoparticles themselves.

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