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An analysis of a planar optical directional coupler with a lossless Kerr-like coupling medium

机译:具有无损Kerr类耦合介质的平面光定向耦合器的分析

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The nonlinear all-optically controlled coupling characteristics are studied analytically and numerically for two planar optical waveguides coupled through a lossless Kerr-like slab. The exact dispersion equation for this waveguiding structure is derived in terms of Jacobian elliptic functions. The optical intensity-dependent coupling length is described as a combination of symmetriclike and antisymmetriclike modes of propagation, derived from the nonlinear combination of the independent modes of the structure. A simple analytical formula is derived for the critical power, defined as the power above which the antisymmetric mode disappears and complete energy transfer between the two waveguides is no longer possible. The analysis provides insight into the complicated nature of the waveguiding structure behavior, and it shows one possible approach to solving difficult propagation problems in nonlinear optical waveguides of this or similar configuration.
机译:对通过无损Kerr状​​平板耦合的两个平面光波导的非线性全光控制耦合特性进行了分析和数值研究。根据Jacobian椭圆函数,得出了该波导结构的精确色散方程。取决于光强度的耦合长度被描述为对称和反对称传播模式的组合,该传播模式是从结构的独立模式的非线性组合得出的。为临界功率导出一个简单的解析公式,该公式定义为功率,高于该功率,反对称模式消失,并且不再可能在两个波导之间进行完全的能量传输。该分析提供了对波导结构行为的复杂性质的洞察力,并显示了解决这种或类似配置的非线性光波导中的困难传播问题的一种可能方法。

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