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首页> 外文期刊>IEEE Photonics Technology Letters >Eight-channel wavelength multiplexing with 200-GHz spacing using uncooled coaxial fiber Bragg grating external-cavity semiconductor laser module
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Eight-channel wavelength multiplexing with 200-GHz spacing using uncooled coaxial fiber Bragg grating external-cavity semiconductor laser module

机译:使用未冷却的同轴光纤布拉格光栅外腔半导体激光模块以200 GHz间隔进行八通道波长复用

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摘要

As a low-cost light source for wavelength-division-multiplexing networks, the authors develop an uncooled coaxial fiber Bragg grating external-cavity semiconductor laser (FGL). To realize high-wavelength stability, an FGL structure is adopted, and to reduce the cost of light source itself, a coaxial pigtail module structure is selected. High-wavelength stabilities of 2 pm/mA and 12 pm/K against current and ambient temperature variation are realized. Using the FGLs, successive eight-channel wavelength multiplexing with 200-GHz spacing and with almost the same peak power is realized between -30/spl deg/C to 70/spl deg/C. For each channel, the wavelength difference from the corresponding ITU grid is only within /spl plusmn/0.1 nm at 25/spl deg/C.
机译:作为用于波分复用网络的低成本光源,作者开发了一种非冷却同轴光纤布拉格光栅外腔半导体激光器(FGL)。为了实现高波长稳定性,采用了FGL结构,为降低光源本身的成本,选择了同轴尾纤模块结构。实现了针对电流和环境温度变化的2 pm / mA和12 pm / K的高波长稳定性。使用FGL,可以在-30 / spl deg / C至70 / spl deg / C之间实现连续200 GHz间隔和几乎相同的峰值功率的八通道波长多路复用。对于每个通道,在25 / spl deg / C时,与相应ITU网格的波长差仅在/ spl plusmn / 0.1 nm以内。

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