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Transmission characteristics of one-dimensional periodic optical waveguide networks

机译:一维周期性光波导网络的传输特性

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摘要

In this study, the transmission characteristics of one-dimensional (1D) periodic optical waveguide networks (POWNs) composed of simple or complex unit cells are systematically studied with the transfer matrix method. Using this method, the general transmission formula is analytically derived for any 1D POWNs. Due to the periodicity, three types of transmission resonance peaks can be produced, one of which shows an interesting missing order effect. The conditions for producing these phenomena are analytically obtained from the transmission formula. Moreover, it is found that transmission valleys in the passbands can be described by a simple envelope function. A greater number of waveguides in a simple unit cell or more nodes in a complex unit cell result in smaller minima of the passband transmission valley. Finally, the formula for the depth of photonic band gaps (PBGs) is analytically determined.We find that the depth of PBGs exponentially increases with the cell number and the width of PBGs becomes wider with the increase of the node in unit cells. Our work enhances people's understanding of the optical characteristics of periodic waveguide networks, and may be useful for designing all-optical devices, such as dense wavelength division multiplexers, high-efficiency optical switches, and wideband and/or narrowband optical filters.
机译:在该研究中,通过传递矩阵方法系统地研究了由简单或复杂的单元电池组成的一维(1D)周期光波导网络(猎人)的传输特性。使用这种方法,将一般传输公式用于任何1D奉献者。由于周期性,可以产生三种类型的传输谐振峰,其中一个是表示有趣的缺失顺序效果。产生这些现象的条件是从透射公式中分析的。此外,发现可以通过简单的包络功能来描述通带中的传输谷。在复杂单元电池中简单的单元电池或更多节点中的更多的波导导致通带传输谷的更小的最小值。最后,分析了光子带间隙(PBG)深度的公式。我们发现,随着单元电池中的节点的增加,PBG的深度随着单元数量而越来越宽。我们的工作提高了人们对周期性波导网络的光学特性的理解,并且可以用于设计所有光学器件,例如密集波分复用器,高效光学开关和宽带和/或窄带光学滤波器。

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