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首页> 外文期刊>Optics Letters >Silicon band-rejection and band-pass filter based on asymmetric Bragg sidewall gratings in a multimode waveguide
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Silicon band-rejection and band-pass filter based on asymmetric Bragg sidewall gratings in a multimode waveguide

机译:基于多模波导中非对称布拉格侧壁光栅的硅带阻和带通滤波器

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摘要

A silicon photonic wire filter based on an asymmetric side-wall Bragg grating in a multimode silicon-on-insulator strip waveguide is demonstrated. The operating principle is based on the contra-directional coupling between the transverse electric fundamental (TE0) and first-order (TE1) modes, which is enabled by the asymmetric spatially periodic refractive-index perturbations. An asymmetric Y-junction is cascaded at the input port of the filter so as to drop the Bragg reflection. Compared with conventional Bragg grating-based filters, this device eliminates the back reflection at the input port and the 6 dB inherent insertion loss at the drop port; moreover, a narrow 3 dB bandwidth can be obtained with a large critical dimension as a result of the weak coupling strength between the TE0 and TE1 modes inside the multimode waveguide. Experimental results show that a bandwidth of similar to 2.8 nm is achieved by a large corrugation width of 150 nm. The insertion loss at the drop port is -2.1 dB, and the extinction ratio is -33 dB at the through port. (C) 2016 Optical Society of America
机译:对多模绝缘体上硅条状波导中基于不对称侧壁布拉格光栅的硅光子线滤波器进行了演示。该工作原理基于横向电基波(TE0)模式与一阶(TE1)模式之间的反向耦合,该耦合通过非对称的空间周期性折射率扰动实现。不对称的Y形结级联在滤波器的输入端口,以降低布拉格反射。与传统的基于布拉格光栅的滤波器相比,该器件消除了输入端口的背向反射和引入端口的6 dB固有插入损耗。此外,由于多模波导内部的TE0和TE1模式之间的耦合强度较弱,因此在临界尺寸较大的情况下可以获得较窄的3 dB带宽。实验结果表明,通过150 nm的大波纹宽度可实现约2.8 nm的带宽。引入端口的插入损耗为-2.1 dB,直通端口的消光比为-33 dB。 (C)2016美国眼镜学会

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