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Design of Polarization-Independent Coarse Wavelength Splitters Based on Ridge-Waveguide Directional Couplers

机译:基于脊波导定向耦合器的偏振无关粗波长分离器的设计

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摘要

We present the first unique design of a polarization-independent dual-wavelength splitter for wavelengths around 1.3 μm and 1.55 μm that is potentially of great interest to passive optical network (PON) applications. The filter design is simple compared with the other architectures and is based on ridge-type lateral directional couplers that can be readily integrated with other planar waveguide devices. Two design examples, based on InP/InGaAsP and Si/SiGe waveguides, are given. This polarization-independent wavelength splitting is achieved by exploiting the polarization dependence of the waveguides to produce coupling lengths that are sensitive to polarization and wavelength. We show that, to split the wavelengths without splitting the polarizations, the coupling lengths must be sufficiently different for TE and TM and for the different wavelengths in order to give the correct required ratios between the TE and TM coupling lengths for the two wavelengths of interest. We also show that the same approach can be applied to the design of a polarization splitter. The crosstalk, optical bandwidth, and fabrication sensitivity for the wavelength filter are evaluated.
机译:我们介绍了波长为1.3μm和1.55μm的波长的偏振无关双波长分离器的第一种独特设计,这可能对被动光网络(PON)应用具有很大兴趣。与其他架构相比,滤波器设计简单,并且基于脊型横向耦合器,其可以容易地与其他平面波导器件集成。给出了基于INP / InGaAsP和Si / SiGe波导的两个设计示例。通过利用波导的偏振依赖性来实现这种偏振无关的波长分裂来实现对偏振和波长敏感的耦合长度来实现。我们示出了,为了在不分裂偏振的情况下分割波长,耦合长度必须足够不同,对于TE和TM,并且对于不同的波长,以便在TE和TM耦合长度之间给出用于两个波长的正确所需比率。我们还表明,相同的方法可以应用于偏振分离器的设计。评估波长滤波器的串扰,光带宽和制造灵敏度。

著录项

  • 作者

    Chee-Wei Lee;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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