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中国物理学会期刊

多模光纤中基于压缩传感的光谱探测

CSTR: 32037.14.aps.69.20200014

Spectrum detection based on compressive sensing inside multimode fibers

CSTR: 32037.14.aps.69.20200014
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  • 随着集成光学器件的发展, 昂贵、笨重的商用光谱仪迫使人们更加热衷于对高性能、集成化和低成本的光谱计进行研究. 本研究基于多模干涉图案对单波长的强烈依赖特性, 采用压缩传感算法实现了对任意形状信号光谱的探测. 该锥形光纤光谱计具有20 pm的光谱分辨率和200 nm以上的探测带宽, 光谱重建结果显示了其优异的同色异谱效应, 为今后便携式和多功能的片上集成系统提供了有效途径.

     

    With the rapid development of integrated photonics, expensive and bulky commercial spectrometers force people to make more efforts to investigate high-performance, integrated and low-cost spectrometers. Spectrometers benefiting from the complementary metal-oxide semiconductor (CMOS) technology have greatly enriched the applications of spectrum detection while devices based on optical fibers still have potential development room. Owing to the strong dependence of multimode interference on wavelength generated in a multimode fiber, probe signals of arbitrary spectra could be detected by a detector array integrated on the top and reconstructed by using a compressive sensing (CS) algorithm. The CS algorithm has been widely used in signal processing, which saves more computing storage and time but maintains the same precision. With the interference pattern system, our spectrometer based on a fiber taper achieves a spectral resolution of 20 pm (one order of magnitude better than commercial spectrometers) and a detection bandwidth of more than 200 nm on a device length of 1 mm. After optimizing the energy function, the spectral reconstruction results show excellent detection capability and metamerism effect superior to RGB cameras or human eyes, providing a significant role for portable multi-functional on-chip systems in future.

     

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