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Design and performance analysis of InP/InGaAsP-MMI based 1310/1550-nm wavelength division demultiplexer with tapered waveguide geometry

机译:基于InP / InGaAsP-MMI的1310/1550 nm锥形波导几何波分复用器的设计和性能分析

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摘要

The design and performance analysis of a 1310/1550-nm wavelength division demultiplexer with tapered geometry based on InP/InGaAsP multimode interference (MMI) coupler has been carried out. Wavelength response of demultiplexer of conventional MMI and tapered input and tapered output (tapered I/O) waveguides geometry of the MMI have been discussed. The demultiplexing function has been first performed by choosing a suitable refractive index of the guiding region and geometrical parameters such as the width and length of MMI structure have been achieved. Access width of tapered I/O waveguides have been adjusted to give a low insertion loss (IL) and high extinction ratio (ER) for the considered wavelengths of 1310 nm and 1550 nm. The total size of the demultiplexer has been significantly reduced over the existing MMI devices. Numerical simulations with finite difference beam propagation method are applied to design and optimize the operation of the proposed demultiplexer.
机译:基于InP / InGaAsP多模干扰(MMI)耦合器,对具有锥形几何形状的1310/1550 nm波分复用器进行了设计和性能分析。讨论了常规MMI的解复用器的波长响应以及MMI的锥形输入和锥形输出(锥形I / O)波导的几何形状。首先通过选择合适的引导区域的折射率来执行解复用功能,并且已经实现了诸如MMI结构的宽度和长度的几何参数。对于所考虑的1310 nm和1550 nm波长,已经对锥形I / O波导的访问宽度进行了调整,以实现低插入损耗(IL)和高消光比(ER)。与现有的MMI设备相比,解复用器的总大小已大大减小。利用有限差分波束传播方法进行了数值模拟,以设计和优化所提出的解复用器的操作。

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