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Multi-Channel Parallel Silicon Mode-Order Converter for Multimode On-Chip Optical Switching

机译:用于多模装片上光学切换的多通道并行硅模式顺序转换器

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摘要

Various mode-order converters are implemented in optical mode multiplexing and mode switching systems. Typically, such devices can only accomplish one mode-order conversion function. In this paper, we propose a multi-channel parallel mode-order converter based on inverse-design optimization method. By using a QR-code-like silicon structure, it can realize the mode-order conversions of multiple mode channels simultaneously in a compact footprint. As a proof of concept, we design and demonstrate a dual-channel silicon mode-order converter, which converts TE0 mode to TE2 mode, and TE1 mode to TE3 mode. It has a footprint of 4 mu mx3 mu m. Simulation results show that the insertion losses for the two mode-order conversion process are 0.8-1.0 dB and 0.9-1.2 dB, and have good tolerance to temperature variations. The inter-mode cross-talk is lower than -19.9 dB and -17.4 dB. Experimental results show that its range of insertion losses for the two process fluctuate within 2.0-3.6 dB and 1.5-5.1 dB in the wavelength range of 1525-1565 nm. The inter-mode cross-talk is lower than -10.7 dB and -13.1 dB, respectively.
机译:在光学模式多路复用和模式交换系统中实现了各种模式顺序转换器。通常,这种设备只能完成一个模式顺序转换功能。在本文中,我们提出了一种基于逆设计优化方法的多通道并联模式顺序转换器。通过使用像QR代码的硅结构,可以在紧凑的占地面积中同时实现多个模式通道的模式顺序转化。作为概念证明,我们设计并演示了双通道硅模式顺序转换器,将TE0模式转换为TE2模式,TE1模式转换为TE3模式。它具有4 mu mx3 mu m的占地面积。仿真结果表明,两种模式顺序转换过程的插入损耗为0.8-1.0dB和0.9-1.2dB,对温度变化具有良好的耐受性。模式交叉口交低于-19.9 dB和-17.4 dB。实验结果表明,其两个过程的插入损耗范围在1525-1565nm的波长范围内波动到2.0-3.6dB和1.5-5.1dB。模式交叉口交分别低于-10.7dB和-13.1dB。

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