首页> 外文会议>2005 Asia-Pacific Microwave Conference Proceedings vol.5: Microwaves Make People Closer >Optical Pulse distortion in Fibonacci-class Quasi Photonic Crystals
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Optical Pulse distortion in Fibonacci-class Quasi Photonic Crystals

机译:斐波那契级准光子晶体中的光脉冲畸变

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In this work, the optical pulse propagation and its distortion due to dispersion properties of the quasi-periodic structures and especially Fibonacci-class is investigated. Based on TMM method, we show that the Fibonacci-class quasi-periodic structures have large dispersion coefficients respect to periodic structures and in small length (versus periodic case) will destroy the incident pulse shape. In this paper, dispersion characteristics numerically simulated and the output power is calculated. Using output power, we can obtain distortion limit due to dispersion and finally determine the maximum number of layers in which can be used with acceptable distortion. Also, we demonstrate the second order (D) and third order (B) dispersion coefficients for 1.55 um graphically for designing the dispersion compensation networks.
机译:在这项工作中,研究了由于准周期结构,尤其是斐波那契级的色散特性而引起的光脉冲传播及其畸变。基于TMM方法,我们证明斐波那契类准周期结构相对于周期结构具有较大的色散系数,并且在较小的长度(相对于周期情况)下会破坏入射脉冲的形状。在本文中,对色散特性进行了数值模拟,并计算了输出功率。使用输出功率,我们可以获得由于色散引起的失真极限,并最终确定可以使用可接受失真的最大层数。此外,我们以图形方式展示了1.55 um的二阶(D)和三阶(B)色散系数,用于设计色散补偿网络。

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