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Wavelength demultiplexing with layered multiple Bragg gratings in LiNbO_(3):Fe crystal

机译:LiNbO_(3):Fe晶体中层状多个布拉格光栅的波长解复用

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摘要

Dense wavelength division multiplexing (DWDM) is an important technology for expanding the capacityof optical network. The optical component based on the superimposed Bragg gratings shows that it can be used as one of advantageous multichannel components because of its excellent angle and wavelength selectivities. An optimized method for recording multiple Bragg gratings for wavelength demultiplexing in optical telecommunication band is proposed to achieve gratings with equal diffraction efficiency. A structure of three layers with twenty four gratings is demonstrated in a LiNbO_(3):Fe crystal by employing the optimized recording method. Then an initial wavelength demultiplexing experiment based on the formed gratings is carried out in optical telecommunication C-band. The results obtained by measuring and analyzing the transmitted spectra of the fabricated gratings show that the diffraction efficiencies of the gratings are uniform. It is suggested that this kind of multiple gratings can be used for increasing the number of the demultiplexed wavelengths in recording medium with unit volume for WDM.
机译:密集波分复用(DWDM)是扩展光网络容量的一项重要技术。基于叠加布拉格光栅的光学组件显示,由于其出色的角度和波长选择性,它可以用作有利的多通道组件之一。提出了一种用于记录多个布拉格光栅以在光通信频带中进行波长解复用的优化方法,以实现具有相同衍射效率的光栅。通过采用优化的记录方法,在LiNbO_(3):Fe晶体中展示了具有24个光栅的三层结构。然后,在光通信C波段进行了基于形成的光栅的初始波长解复用实验。通过测量和分析所制造的光栅的透射光谱而获得的结果表明,光栅的衍射效率是均匀的。建议将这种多重光栅用于以WDM为单位体积增加记录介质中多路分解波长的数量。

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