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实验演示了一种用于绝缘体上硅平台的混合等离子体横向电场通偏光器。

Experimental demonstration of a hybrid plasmonic transverse electric pass polarizer for a silicon-on-insulator platform.

机构信息

Edward S. Rogers Sr. Department of Electrical and Computer Engineering, University of Toronto, Toronto, Ontario, Canada.

出版信息

Opt Lett. 2012 Dec 1;37(23):4814-6. doi: 10.1364/OL.37.004814.

Abstract

We experimentally demonstrate a transverse electric (TE)-pass polarizer using the recently proposed hybrid plasmonic waveguide. The device consists of a silicon film separated from a chromium layer by a silica spacer. The device was characterized using a tunable laser in the 1.52-1.58 μm wavelength range. For a 30 μm long polarizer, the extinction ratio in this wavelength range varies from 23 to 28 dB and the insertion loss for the TE mode is 2-3 dB. The device is compact; its fabrication is completely compatible with silicon-on-insulator technology, and its performance compares favorably against previously reported silicon-based integrated optic TE-pass polarizers.

摘要

我们使用最近提出的混合等离子体波导实验演示了一种横电(TE)通偏光器。该器件由一个硅薄膜和一个铬层通过二氧化硅间隔层隔开。使用可调谐激光器在 1.52-1.58μm 波长范围内对器件进行了特性表征。对于一个 30μm 长的偏光器,在该波长范围内的消光比从 23dB 到 28dB 变化,TE 模式的插入损耗为 2-3dB。该器件结构紧凑,其制造完全与绝缘体上硅技术兼容,并且其性能优于以前报道的基于硅的集成光学 TE 通偏光器。

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