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基于表面等离子体波导的模式耦合偏振旋转器。

Mode-coupling polarization rotator based on plasmonic waveguide.

作者信息

Jin Lin, Chen Qin, Wen Long

出版信息

Opt Lett. 2014 May 1;39(9):2798-801. doi: 10.1364/OL.39.002798.

Abstract

A novel polarization rotator (PR) based on mode coupling in plasmonic waveguides is demonstrated by simulation. A silicon waveguide with asymmetric claddings of silicon oxide and metal is applied to induce a hybridization of the polarization modes. Operating at the telecommunication wavelength of 1.55 μm, polarization conversion efficiency of 99.7% can be achieved in a device at a length of 9.7 μm with an insertion loss of 2.2 dB. This PR can be easily fabricated by oblique deposition of the claddings after etching the silicon waveguide without precise alignment for two-step lithography as required in a previous design.

摘要

通过模拟展示了一种基于等离子体波导中模式耦合的新型偏振旋转器(PR)。采用具有氧化硅和金属非对称包层的硅波导来诱导偏振模式的杂化。在1.55μm的电信波长下工作,在长度为9.7μm、插入损耗为2.2dB的器件中可实现99.7%的偏振转换效率。与先前设计中所需的两步光刻且需要精确对准不同,这种PR可以在蚀刻硅波导后通过倾斜沉积包层轻松制造,无需精确对准。

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