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Polarization splitter and rotator with subwavelength grating for enhanced fabrication tolerance

机译:具有亚波长光栅的偏振分束器和旋转器,可提高制造公差

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We propose a novel method to implement a compact and fabrication-tolerant polarization splitter and rotator (PSR) on the silicon-on-insulator platform. The PSR consists of a silicon wire waveguide coupled to a subwavelength grating (SWG) waveguide in an asymmetrical directional coupler. The SWG effect allows an additional degree of design freedom to engineer the equivalent material refractive index. This is advantageously used to effectively compensate for fabrication inaccuracies in PSRs. Our simulation results show that the PSR has a low TM-to-TE polarization conversion loss of -0.13 dB (a conversion efficiency of 97%) at the wavelength of 1550 nm, and better than -0.4 dB conversion loss over the entire C-band wavelength range. Compared to the PSRs made of conventional wire waveguides, the use of SWG index engineering improves the waveguide width fabrication tolerance substantially, from +/- 3 nm to +/- 40 nm. A compact device size with a coupling length of 25 mu m is achieved. (C) 2014 Optical Society of America
机译:我们提出了一种新颖的方法来在绝缘体上硅平台上实现紧凑且耐制造性的偏振分离器和旋转器(PSR)。 PSR由硅线波导组成,该硅线波导耦合到非对称定向耦合器中的亚波长光栅(SWG)波导。 SWG效果提供了额外的设计自由度,可设计等效的材料折射率。有利地,这被用于有效地补偿PSR中的制造误差。我们的仿真结果表明,PSR在1550 nm波长处的TM-TE极化转换损耗很低,为-0.13 dB(转换效率为97%),并且在整个C-波段波长范围。与传统的导线波导制成的PSR相比,使用SWG指数工程技术可将波导宽度的制造公差从+/- 3 nm大幅提高到+/- 40 nm。装置尺寸紧凑,耦合长度为25μm。 (C)2014年美国眼镜学会

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