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Interference-based micromechanical spectral equalizers

机译:基于干扰的微机械频谱均衡器

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摘要

Dynamic gain equalization filters (DGEFs) are important for high-performance wavelength division multiplexed (WDM) communications. One of the first demonstrated DGEF used a micromechanical etalon filter array illuminated with free-space spectral demultiplexing optics. Here, we present subsequent research on etalon-based dynamic spectral filters, including vertical device structures which linearize and reduce the drive voltage from 70 to 40 V, and spatially-segmented etalons which allow channelized spectral equalization and further reduce drive voltage. We describe a prototype using a simplified cylindrical optomechanical package with a 104-nm broadband spectral response, 7.5-dB insertion loss and less than 16-V operation voltage. Finally, we show the use of a 42-nm bandwidth DGEF prototype with feedback stabilization to more than double the number of channels and operating bandwidth of a conventional Erbium-doped fiber amplifier while maintaining < 1-dB power uniformity.
机译:动态增益均衡滤波器(DGEF)对于高性能波分复用(WDM)通信非常重要。最早展示的DGEF之一使用了微机械标准具滤光片阵列,该阵列用自由空间光谱解复用光学器件照明。在这里,我们介绍基于标准具的动态频谱滤波器的后续研究,包括将驱动电压线性化并将驱动电压从70 V降低到40 V的垂直器件结构,以及允许通道化频谱均衡并进一步降低驱动电压的空间分段标准具。我们描述了一种使用简化的圆柱形光机械封装的原型,该封装具有104 nm的宽带频谱响应,7.5 dB的插入损耗和小于16V的工作电压。最后,我们展示了如何使用具有反馈稳定功能的42 nm带宽DGEF原型,将传统的掺b光纤放大器的通道数量和工作带宽提高一倍以上,同时保持<1 dB的功率均匀性。

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