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Ultra-wideband high-speed wavelength-swept DFB laser array and precision measurement system of nonlinear wavelength variations

作者:Yaqiang Fan, Pan Dai, Zhenxing Sun, Yuan Lv, Wei Yuan, Haolin Xia, Jingxuan Zhang, Junwei Dong, Jun Xu, Jie Zeng, Feng Wang, Xiangfei Chen · 发表于:Photonics Research · 年份:2025 · DOI:10.1364/prj.545701 · 被引用次数:6 · 研究领域:Advanced Optical Sensing Technologies、Advanced Fiber Optic Sensors、Photonic and Optical Devices

In this study, we developed a robust, ultra-wideband, and high-speed wavelength-swept distributed feedback (DFB) laser array with an 8×3 matrix interleaving structure with no movable or fragile optical components. This wavelength-swept laser (WSL) achieves a continuous (gap-free) wavelength sweeping range of 60 nm and a rapid sweeping speed of 82.7 kHz, marking the widest wavelength sweeping range reported to date for high-speed WSLs based on DFB laser arrays, to our knowledge. To achieve the high-precision mapping from the time domain to the frequency domain, a nonlinear wavelength and frequency variation measurement system based on dual Fabry–Perot (F-P) etalons is designed. The system accurately measures the dynamic relationship of frequency variations over time, enabling precise wavelength interrogation. The proposed WSL was applied to the fiber Bragg grating (FBG) sensor interrogation system. In the high-low temperature and strain experiments, the system performed real-time dynamic interrogation of FBGs for up to 3 h. The experimental results demonstrated good relative accuracy and excellent interrogation performance of the system. In the vibration experiment, the system achieved high-precision interrogation of FBG sensors for high-frequency sinusoidal vibrations up to 8 kHz. Furthermore, the system worked stably under strong vibrations and shocks. Thus, the proposed WSL is applicable to high-speed FBG sensing and optical coherence tomography applications.