A butterfly MMI waveguides based polarization beam splitter etched on SOI platform

C. Truong, Duc Han Tran, Vu Chung Hoang, T. Le
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Abstract

A polarization beam splitter is used for dividing transverse electric (TE) and transverse magnetic (TM) modes, in which a silicon on insulator platform based multimode interference coupler is etched depth by a butterfly form is proposed and designed by using the semi-vectorial three-dimensional beam-propagation method. The device is operated on quasi state mechanism that only four modes are excited in the multimode region. High birefringence property of the device incorporated with butterfly form allows to shortening the size. The polarization extinction ratio is smaller than 20 dB, and the excess loss is not excess 0.6 dB for both polarization modes. The splitter also has a relaxed fabrication tolerance. These attributes make it as a good candidate for polarization diversity circuits and compact photonic integrated circuits.
基于蝶形MMI波导的SOI平台刻蚀偏振分束器
采用偏振分束器划分横向电(TE)模式和横向磁(TM)模式,采用半矢量三维波束传播方法,提出并设计了一种基于绝缘体上硅平台的多模干涉耦合器,该耦合器采用蝴蝶形蚀刻深度。该器件在准态机制下工作,在多模区只有四个模式被激发。高双折射特性的装置结合蝴蝶形式允许缩短尺寸。两种偏振模式的偏振消光比均小于20 dB,超损耗均不超过0.6 dB。分离器也有一个宽松的制造公差。这些特性使其成为极化分集电路和紧凑型光子集成电路的良好候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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