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Temperature tuning of superluminescent Er~(3+)-doped source based on Mach-Zehnder interferometer and long-period fiber gratings

机译:基于Mach-Zehnder干涉仪和长周期光纤光栅的Er〜(3+)超发光源的温度调谐

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摘要

The simulation and experimental results of the temperature tuning of an Er~(3+)-doped fiber (EDF) Mach-Zehnder interferometer (MZI) proposed for sensing applications were presented. The MZI was mechanically induced using two polypropylene long-period fiber gratings made with a pulsed CO_2 laser. The proposed interferometer device showed four peaks of transmittance and multifiltering around the 1550-nm region, suitable for Telecomm systems. The numerical simulation is simple and is based on rate equations which allows for amplified spontaneous emission behavior prediction and mode propagation. The demonstrated fringe pattern makes the proposed device suitable for multiwavelength sensors based on EDFs.
机译:提出了用于传感应用的掺Er〜(3+)光纤(EDF)马赫曾德尔干涉仪(MZI)的温度调谐仿真和实验结果。 MZI是使用两个由脉冲CO_2激光制成的聚丙烯长周期光纤光栅机械诱导的。拟议的干涉仪设备在1550 nm区域附近显示出透射率和多重滤波的四个峰值,适合电信系统。数值模拟很简单,并且基于速率方程,可以进行放大的自发发射行为预测和模式传播。所展示的条纹图案使所提出的设备适用于基于EDF的多波长传感器。

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