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Research on Dynamic Grating Cascaded Fiber Bragg Grating Fabry-Perot Cavity

机译:动态光栅级联纤维布拉格光栅磨光机 - 珀罗腔研究

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With the development of optical fiber technology, the application of dynamic grating has been widely concerned, such as optical fiber sensor, tunable narrow-band filter, fiber amplifier and so on. The erbium-doped fiber is selected as the dynamic grating, and one end of the erbium-doped fiber is connected. The forward wave is reflected by the Fiber Bragg Grating (FBG) to form a backward wave propagating backward. If the reflectivity of the Bragg grating is very close to 1, the standing wave field formed by the forward wave and the backward wave is perfect standing wave. The transmittance is calculated by the transmission matrix, and the grating parameters are converted into the control parameters in the writing process by the program-aided design, so as to guide the writing of the fiber grating. An important property of Fabry-Perot cavity is that its output spectrum can be dynamically modulated by adjusting parameters. Due to the adjustable parameters of the erbium-doped dynamic grating, compared with Fabry-Perot cavity composed of two identical fiber gratings, the parameters can be flexibly adjusted, and the fiber Bragg gratings at both ends of Fabry-Perot cavity can be fully symmetrical, which theoretically guarantees the optical performance 100% lossless transmission is conducive to the mode selection of Fabry-Perot cavity. The optical fiber Fabry-Perot cavity can be applied to the optical signal processing of optical fiber communication or the field of optical fiber sensing.
机译:随着光纤技术的发展,动态光栅的应用已被广泛关注,如光纤传感器,可调窄带滤波器,光纤放大器等。选择铒掺杂纤维作为动态光栅,连接铒掺杂光纤的一端。前向波由光纤布拉格光栅(FBG)反射,以形成向后传播的后向波。如果布拉格光栅的反射率非常接近1,则由正向波和后波形成的驻波场是完美的驻波。透射率通过传输矩阵计算,并且光栅参数通过程序辅助设计在写入过程中转换为控制参数,从而引导光纤光栅的写入。 Fabry-Perot腔的重要属性在于,可以通过调整参数来动态调制其输出频谱。由于掺铒动态光栅的可调节参数,与由两个相同的光纤光栅组成的法布里 - 珀罗腔相比,可以灵活地调节参数,并且法布里 - 珀罗腔的两端光纤布拉格光栅可以完全对称从理论上保证光学性能100%无损传输有利于法布里 - 珀罗腔的模式选择。光纤法布里 - 珀罗腔可以应用于光纤通信的光学信号处理或光纤感测的领域。

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