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JOURNALS // Fizika Tverdogo Tela // Archive

Fizika Tverdogo Tela, 2020 Volume 62, Issue 8, Pages 1260–1264 (Mi ftt8350)

This article is cited in 14 papers

Optical properties

Surface waves at the boundary of a medium with a refractive index switching and a crystal with the diffusion-type photorefractive nonlinearity

S. E. Savotchenko

Belgorod Shukhov State Technological University

Abstract: A model is formulated, in which the patterns of the formation of nonlinear surface waves with a specific field structure are described. It is shown that there are two new types of waves of selected polarization that propagate along the contact of a photorefractive crystal with diffusion nonlinearity and a nonlinear optical medium with switching. Nonlinearity in such a medium is modeled by a stepwise change in the refractive index depending on the field amplitude. The field structure in the obtained surface waves consists of three components in different areas of the contacting media. As a result of the propagation of a localized light beam along the boundary in the border region, a zone of finite width is formed, characterized by a refractive index that differs from the rest of the medium. In the region behind such a domain, the field decreases exponentially with distance from the border region. The field can decrease with or without oscillations In a photorefractive crystal. The dependence of the propagation constant on the optical characteristics of the media and control parameters is obtained in an explicit analytical form.

Keywords: nonlinear surface wave, photorefractive crystal, step nonlinearity, diffusion nonlinearity, nonlinear refractive index.

Received: 06.03.2020
Revised: 06.03.2020
Accepted: 23.03.2020

DOI: 10.21883/FTT.2020.08.49611.050


 English version:
Physics of the Solid State, 2020, 62:8, 1415–1420

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