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Nonuniform Bragg gratings for DWDM applications

机译:用于DWDM应用的非均匀布拉格光栅

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The advent of the Dense Wavelength Division Multiplexing (DWDM) technology in Optical Fiber Networks (OFNs) has resulted in the necessity of developing advanced Optical Add/Drop Multiplexers (OADMs) on the basis of submicron Bragg gratings. The OADMs for dense multichannel OFNs with bit rates 10-40 Gbits/s per channel and channel spacing 200, 100 and 50 GHz must possess rectangular-shaped reflection/transmission spectra and linear phase characteristic within the stop/passband. These features can not be achieved using uniform Bragg gratings and therefore nonuniform gratings with space-modulated coupling coefficient and/or phase shifts π should be used. We present the recent advances in the design and fabrication of narrowband wavelength-selective filters for DWDM applications using submicron nonuniform Bragg gratings. The peculiarities of propagation, interaction and diffraction of electromagnetic waves in nonuniform grating structures are considered. Narrowband reflection filters using single-mode quartz fibers with side-polishing and relief gratings on dielectric and polymeric materials are designed and fabricated. The filters have nearly rectangular shape of the stopband with 0.4 - 1.6 nm width and peak reflectivity R > 99% in the 1.55 μm wavelength region. The architecture of multichannel OADMs for high-speed OFNs using planar polymer Integrated Photonic Circuits (IPCs) with biharmonic Bragg gratings, possessing phase shifts π, is discussed.
机译:光纤网络(OFN)中密集波分复用(DWDM)技术的出现,导致有必要在亚微米布拉格光栅的基础上开发先进的光分插复用器(OADM)。密集多通道OFN的OADM,每个通道的比特率为10-40 Gbits / s,通道间隔为200、100和50 GHz,必须在停止/通带内具有矩形反射/透射光谱和线性相位特性。使用均匀的布拉格光栅无法获得这些特征,因此,应使用具有空间调制耦合系数和/或相移π的非均匀光栅。我们介绍了使用亚微米非均匀布拉格光栅的DWDM应用的窄带波长选择滤波器的设计和制造的最新进展。考虑了非均匀光栅结构中电磁波的传播,相互作用和衍射的特殊性。设计和制造了使用单模石英纤维的窄带反射滤光片,在介电和聚合物材料上具有侧面抛光和浮雕光栅。滤光片的阻带几乎呈矩形,宽度为0.4-1.6 nm,在1.55μm波长范围内的峰值反射率R> 99%。讨论了使用具有双谐波布拉格光栅的平面聚合物集成光子电路(IPC),具有相移π的高速OFN的多通道OADM的体系结构。

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