Optical Properties of Metal-Dielectric Structures Based on Photon-Crystal Opal Matrices


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Abstract

Optical properties of novel metal–dielectric nanocomposite materials based on opal matrices have been investigated. The position of optical resonances of nanocomposites, obtained by embedding of silver into the opal matrix by the electrothermodiffusion method, is explained by the Bragg diffraction, and an asymmetric form of resonance curves is attributed to the Fano resonance. An anomalous transmission and absorption of light by hybrid plasmon-photonic layered heterostructures, which is apparently associated with excitation of surface plasmon-polaritons, propagating along “metal–dielectric” interfaces, was revealed.

About the authors

A. I. Vanin

Pskov State University

Email: solovyev_v55@mail.ru
Russian Federation, Pskov, 180000

A. E. Lukin

Pskov State University

Email: solovyev_v55@mail.ru
Russian Federation, Pskov, 180000

S. G. Romanov

Ioffe Physical Technical Institute

Email: solovyev_v55@mail.ru
Russian Federation, St. Petersburg, 194021

V. G. Solovyev

Pskov State University

Author for correspondence.
Email: solovyev_v55@mail.ru
Russian Federation, Pskov, 180000

S. D. Khanin

Herzen State Pedagogical University of Russia; Budyonny Military Academy of the Signal Corps

Email: solovyev_v55@mail.ru
Russian Federation, St. Petersburg, 191186; St. Petersburg, 194064

M. V. Yanikov

Pskov State University

Email: solovyev_v55@mail.ru
Russian Federation, Pskov, 180000

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