Resonant Absorption of Light by Ordered Two-Dimensional Arrays of Spherical and Cylindrical Nanoparticles in Aluminum Oxide
Abstract
The absorption of light by two-dimensional arrays of homogeneous spherical and cylindrical nanoparticles in an aluminum oxide matrix under lattice resonance conditions is studied. A semi-analytical statistical method (SASM) based on the quasi-crystalline approximation of the theory of multiple scattering of waves is used to model the optical properties of arrays of spherical particles with different types and degrees of order. A numerical finite element method (FEM) is employed to model the optical properties of perfect lattices of cylindrical particles. The calculation results for highly ordered imperfect lattices of spherical particles are in excellent agreement with the FEM data for perfect lattices of such particles. The spectral dependences of the absorption coefficient of the arrays on the spatial organization, degree of order, size, shape, and concentration of silver, gold, cadmium selenide, and MAPbBr3 perovskite particles are presented.
About the Authors
А. A. MiskevichBelarus
Minsk
V. A. Loiko
Belarus
Minsk
N. A. Loiko
Belarus
Minsk
A. G. Smirnov
Belarus
Minsk
E. V. Mukha
Belarus
Minsk
A. A. Hubarevich
Belarus
Minsk
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Review
For citations:
Miskevich А.A., Loiko V.A., Loiko N.A., Smirnov A.G., Mukha E.V., Hubarevich A.A. Resonant Absorption of Light by Ordered Two-Dimensional Arrays of Spherical and Cylindrical Nanoparticles in Aluminum Oxide. Zhurnal Prikladnoii Spektroskopii. 2026;93(4):451-463. (In Russ.)
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