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A New Two-sided Coupling Channel Drop Filter Based On a Two-dimensional Photonic Crystal

机译:一种基于二维光子晶体的新型双面耦合通道掉滤波器

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We design a new two-sided coupling channel drop filter (CDF) based on a two-dimensional (2D) photonic crystal (PC). Three channels formed by line defects for light propagation, two L4 resonators positioned at both sides of the input waveguide for light coupling, and one point defect micro-cavity in the bus waveguide for wavelength-selective reflection are introduced into the PC structure. The optical characteristics of this proposed structure are calculated by finite-difference time-domain (FDTD) method combined with the perfectly matched layers (PMLs) as the boundary conditions. Three wavelengths centered at 1550, 1575 and 1610 nm within the limit of communication windows are successfully separated in three channels by adjusting the size of coupling rods and the positions of L4 resonators and micro-cavity. High transmission efficiency and more than 20 nm channel spacing are achieved. These demonstrate that our proposed structure is suitable for photonic integrated circuits (PICs) and coarse wavelength division multiplexing (WDM) optical communication systems.
机译:我们设计了一个基于二维(2D)的光子晶体(PC)的新双面耦合信道分出滤波器(CDF)。由线缺陷光传播形成的三个通道,两个谐振器L4位于光的耦合输入波导的两侧,以及一个点缺陷微腔在总线波导用于波长选择反射被导入PC结构。此提出的结构的光学特性是由有限差分时域(FDTD)方法与完美匹配层(PMLs)作为边界条件组合来计算。三个波长为中心,在1550,通信窗限度内1575和1610纳米的成功三个通道通过调节连接杆和L4谐振器和微腔的位置的大小分离。高传输效率和大于20nm的信道间隔来实现的。这些表明,我们所提出的结构适用于光子集成电路(PICS)和粗波分复用(WDM)光通信系统。

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