首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Group velocity and energy transport velocity near the band edge of a disordered coupled cavity waveguide: An analytical approach
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Group velocity and energy transport velocity near the band edge of a disordered coupled cavity waveguide: An analytical approach

机译:无序耦合腔波导带边缘附近的群速度和能量传输速度:一种分析方法

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We develop an analytical approach to theoretically investigate light speed propagation near the band edge of a coupled cavity waveguide in the presence of residual disorder. This approach that is based on a mean field theory allows us to define the domains of validity of the group velocity and the energy transport velocity concepts as well as a guideline to minimize the role of the residual disorder. Inspired by an analogy with the theory of multiple scattering of classical wave, we derive an analytical formula for the energy transport velocity in periodic photonic structures. Whereas the group velocity diverges near the band edge in the presence of any amount of residual disorder, we show that the energy transport velocity mainly follows the ideal group velocity of the unperturbed structure except for very strong disturbances out of the scope of the presented model.
机译:我们开发一种分析方法,从理论上研究在存在残留无序的情况下,耦合腔波导的带边缘附近的光速传播。这种基于均值场理论的方法使我们能够定义群速度和能量传输速度概念的有效性域,以及使残留障碍的作用最小化的指南。受经典波多重散射理论的启发,我们得出了周期光子结构中能量传输速度的解析公式。尽管在存在任何数量的残余无序的情况下,群速度在带边缘附近发散,但我们表明,能量传输速度主要遵循无扰动结构的理想群速度,除了非常强的扰动超出了所提出的模型范围之外。

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