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Spectral Analysis Using a Dispersive Microwave Photonics Link Based on a Broadband Chirped Fiber Bragg Grating

机译:基于宽带Chi光纤布拉格光栅的色散微波光子链路的光谱分析

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We report on the use of a dispersive microwave photonics analog optical link for spectral analysis and wavelength measurement in optical fiber sensors. The system is built on the concept of wavelength to group-delay mapping, with a scale determined by the dispersion of the link. In our demonstration, the dispersive channel is a chirped fiber Bragg grating for dispersion compensation of 10 km of single-mode fiber and low third-order dispersion, with a reflection band in the range 1540–1560 nm. The spectral analysis is performed by a vector network analyzer with time-domain analysis software, as in incoherent optical Fourier-domain reflectometry. The spectrum is reproduced as the time-domain impulse response of the fiber-optics link, and the system operates over a wide range of input power and acquisition parameters. As a spectrometer, the system shows sensitivities up to −23.3 dBm, measured at the input of the link, resolutions up to 170 pm, and dynamic range up to 34 dB after windowing the radio frequency response. As a wavelength meter, picometer resolution is demonstrated for laser lines within a 40 pm range, and also an uncertainty of ±4 pm for Bragg wavelength shifts of FBG when the reflected power is −10 dBm.
机译:我们报告了使用色散微波光子模拟光学链路在光纤传感器中进行光谱分析和波长测量的情况。该系统建立在波长到组延迟映射的概念上,其规模由链路的分散确定。在我们的演示中,色散通道是a光纤布拉格光栅,用于10 km单模光纤的色散补偿和低三阶色散,反射带在1540-1560 nm范围内。光谱分析是由带有时域分析软件的矢量网络分析仪执行的,就像在非相干光学傅里叶域反射仪中一样。频谱被复制为光纤链路的时域脉冲响应,并且系统在很宽的输入功率和采集参数范围内运行。作为光谱仪,该系统在开窗射频响应后显示的灵敏度高达−23.3 dBm,在链路的输入端测量,分辨率高达170 pm,动态范围高达34 dB。作为波长计,皮秒仪的分辨率可用于40 pm范围内的激光线,在反射功率为-10 dBm时,FBG的布拉格波长偏移的不确定度也可达到±4 pm。

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