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Nonlinear transmission and light localization in photonic-crystal waveguides

机译:光子晶体波导中的非线性透射和光局部化

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We study light transmission in two-dimensional photonic-crystal waveguides with embedded nonlinear defects. First, we derive effective discrete equations with long-range interaction for describing the waveguide modes and demonstrate that they provide a highly accurate generalization of the familiar tight-binding models that are employed, e.g., for the study of coupled-resonator optical waveguides. Using these equations, we investigate the properties of straight waveguides and waveguide bends with embedded linear and nonlinear defects. We emphasize the role of evanescent modes in the transmission properties of such waveguides and demonstrate the possibility of the nonlinearity-induced bistable (all-optical switcher) and unidirectional (optical diode) transmission. Additionally, we demonstrate adaptability of our approach for investigation of multimode waveguides by the example of the bound states in their constrictions. (C) 2002 Optical Society of America. [References: 27]
机译:我们研究具有嵌入式非线性缺陷的二维光子晶体波导中的光传输。首先,我们推导了具有长程相互作用的有效离散方程来描述波导模式,并证明它们提供了所熟悉的紧密结合模型的高精度归纳,例如,用于研究耦合谐振器光波导。使用这些方程式,我们研究具有嵌入式线性和非线性缺陷的直波导和波导弯曲的特性。我们强调了e逝模在此类波导的传输特性中的作用,并论证了非线性引起的双稳态(全光切换器)和单向(光二极管)传输的可能性。此外,我们通过收缩中的束缚态实例证明了我们研究多模波导的方法的适应性。 (C)2002年美国眼镜学会。 [参考:27]

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