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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Recent advances in high-density and large-scale AWG multi/demultiplexers with higher index-contrast silica-based PLCs
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Recent advances in high-density and large-scale AWG multi/demultiplexers with higher index-contrast silica-based PLCs

机译:高密度和大型AWG多路复用器/多路分解器的最新进展,具有更高对比度的基于二氧化硅的PLC

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This paper reviews recent progress on high-density and large-scale arrayed-waveguide-grating (AWG) multi/demultiplexers, which have been developed for wavelength division multiplexing (WDM)-based photonic networks. The AWG has been the key to the construction of flexible and large-capacity WDM networks. This is because, compared with conventional filters consisting of thin-film interference filters and microoptics, the AWG offers the advantages of low loss, high port counts, and mass productivity. To improve such characteristics further, low-loss, higher index-contrast (super-high Δ) planar lightwave circuits (PLCs) with a bending radius of 2 mm have recently been developed. It has been shown that these PLCs are effective for use in constructing a compact AWG module with 1/5 the volume of a conventional module and large-scale AWGs with 256 and 400 channels. Three techniques for low-loss fiber connection with spot-size converters have also been developed for the super-high Δ PLCs, and it has been confirmed that these techniques can be applied to the fabrication of AWG modules. Furthermore, two-stage tandem AWG-type multi/demultiplexers with more than 1000 channels have been demonstrated. This paper describes the progress that has been made on these high-density and large-scale AWGs, which are expected to contribute greatly to the construction of future photonic networks including optical add/drop multiplexing systems and optical crossconnect systems.
机译:本文回顾了高密度和大规模阵列波导光栅(AWG)复用器/解复用器的最新进展,该技术已开发用于基于波分复用(WDM)的光子网络。 AWG是构建灵活的大容量WDM网络的关键。这是因为,与由薄膜干涉滤光片和微光学元件组成的常规滤光片相比,AWG具有损耗低,端口数高和批量生产的优势。为了进一步改善这种特性,近来已经开发了弯曲半径为2mm的低损耗,高折射率对比度(超高Δ)平面光波电路(PLC)。已经证明,这些PLC可有效地用于构建紧凑型AWG模块,其体积为常规模块的1/5,并具有256和400通道的大规模AWG。还为超高ΔPLC开发了三种与点尺寸转换器进行低损耗光纤连接的技术,并且已确认这些技术可用于AWG模块的制造。此外,已经展示了具有超过1000个通道的两级串联AWG型多路/多路分解器。本文介绍了在这些高密度和大规模AWG方面所取得的进展,这些工作有望为包括光分插复用系统和光交叉连接系统在内的未来光子网络的建设做出巨大贡献。

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