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Optimal design of linear tapered double S-shaped arrayed waveguide grating for broad channel spacing on silicon-on-insulator

机译:绝缘体上硅具有宽通道间距的线性锥形双S形阵列波导光栅的优化设计

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摘要

A linear tapered double S-shaped arrayed waveguide grating (AWG) was designed as an alternative to a U-shaped AWG, and a complete transmission spectrum for 18 channels of coarse wavelength-division multiplexing (CWDM) was demonstrated. The silicon-on-insulator based AWG with a rib waveguide structure with a broad channel spacing of 20 nm was designed to serve as a multiplexer/demultiplexer. A beam propagation method modeling simulation under transverse electric mode polarization over a free spectrum range of 700 nm was used for the design process. The geometrical dimensions of the AWG rib structure were optimized to achieve the lowest reported insertion loss of 1.07 dB and adjacent crosstalk of -38.83 dB. The influence of different etching depths on the top Si layer of the AWG for a constant core width of 0.6 μm as well as birefringence effects were also investigated. A transmission spectrum response at the output port close to the standard CWDM wavelength grid range of 1271 to 1611 nm with an average channel spacing of 2485 GHz was obtained.
机译:设计了线性锥形双S形阵列波导光栅(AWG)作为U形AWG的替代方案,并演示了18个粗波分复用(CWDM)通道的完整传输光谱。基于绝缘体上硅的AWG带有具有20 nm宽通道间隔的肋形波导结构,被设计用作复用器/解复用器。在设计过程中,采用在横向电模偏振下在700 nm的自由光谱范围内进行的光束传播方法建模仿真。优化了AWG肋结构的几何尺寸,以实现最低的报告插入损耗1.07 dB和相邻串扰-38.83 dB。还研究了在0.6μm的恒定芯宽下,不同蚀刻深度对AWG顶层Si层的影响以及双折射效应。获得了输出端口的透射光谱响应,该光谱接近于标准CWDM波长网格范围1271至1611 nm,平均通道间隔为2485 GHz。

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