Optical fluxes in parallel plane nonlinear waveguide arrays in linear optical media

I. V. Gerasimchuk, A. Kovalev
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Abstract

In one of our recent papers (see Radiotekhnika, vol. 110, p. 134, 1999) we described the propagation of the optical flux in the system of two coupled parallel plane waveguides in a nonlinear optical medium. We obtained the value of the light beam interaction in the optical waveguides and the set of the discrete nonlinear equations supposing that waveguides and environment differ in the linear refractive indexes. We demonstrated the possibility of the localization of the nonlinear light flux only on one waveguide. We took into account only the nonlinear Kerr terms inside the waveguides. We used the restriction of a linear optical medium between the waveguides. The equation which describes the slow varying of the envelope of the complex field is directed perpendicularly to the planes of the parallel waveguides.
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线性光介质中平行平面非线性波导阵列的光通量
在我们最近的一篇论文中(见Radiotekhnika, vol. 110, p. 134, 1999),我们描述了在非线性光学介质中两个耦合平行平面波导系统中光通量的传播。在光波导与环境线性折射率不同的情况下,得到了光束在光波导中的相互作用值和离散非线性方程组。我们证明了非线性光通量仅在一个波导上定位的可能性。我们只考虑了波导内部的非线性克尔项。我们利用了波导之间线性光介质的限制。描述复场包络缓慢变化的方程垂直于平行波导的平面。
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