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High-Resolution Detection of Wavelength Shift Induced by an Erbium-Doped Fiber Bragg Grating

机译:掺铒光纤布拉格光栅引起的波长移位的高分辨率检测

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摘要

We analyze theoretically and verify experimentally a high-resolution and low-cost method to detect wavelength shift induced by an Erbium-doped fiber Bragg grating. A π -phase-shifted fiber Bragg grating on a temperature controlling setup is employed to achieve tunable single-sideband modulation. To further enhance measurement stability and diminish operational complexity, an asymmetric phase-shifted fiber Bragg grating is developed to reflect wide single-sideband modulation signals and avoid the tuning of the optical carrier wavelength. Through the using of microwave photonics technique, the wavelength shift of the Erbium-doped fiber Bragg grating induced by laser pumping is mapped onto the amplitude variation of the beat signal. The results indicate 1 GHz frequency shift, corresponding to 0.008 nm wavelength shift in the 1550 nm band, is able to be detected. The resolution can be further improved by using a more accurate temperature controlling system. Furthermore, our approach offers an alternative method to detect weak temperature and strain changes on chips or other sensing systems with high accuracy.
机译:我们从理论上分析并通过实验验证高分辨率和低成本方法,以检测由掺铒光纤布拉格光栅引起的波长偏移。 a π - 用于温度控制设置的相移光纤布拉格光栅用于实现可调的单边带调制。为了进一步提高测量稳定性和减少操作复杂性,开发了不对称的相移光纤布拉格光栅以反射宽的单边带调制信号并避免光学载波波长的调谐。通过使用微波光子学技术,通过激光泵浦诱导的掺铒光纤布拉格光栅的波长偏移映射到节拍信号的幅度变化。结果表明,能够检测到1550nm频带中对应于0.008nm波长偏移的1GHz频移。通过使用更精确的温度控制系统,可以进一步改善分辨率。此外,我们的方法提供了一种替代方法,用于检测芯片或其他感测系统的弱温和应变变化,高精度。

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