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Study of a fiber spectrometer based on offset fusion

机译:基于偏移融合的纤维光谱仪研究

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A near-infrared spectrometer based on offset fused multi mode fiber (MMF) is investigated in this study. The light spectrum is recovered by analyzing the speckle images when light is passing through the MMF. In order to generate adequate speckles, a polarization maintaining fiber (PMF) and a 30 cm long MMF are fused with a vertical offset. Seven different offset displacements are implemented in the fiber fusion. The follow-up experiments show that the fiber offset fusion has a significant influence on the spectral correlation and the resolution. Larger offset fusion can excite more high-order modes in the MMF, and it greatly improves the spectrometer's performance. The simulation results also show that more modes are excited in MMF, and the increase of mode number leads to lower correlation coefficients of the neighboring spectral channels. However, large offset fusion increases the fusion and the insertion loss of the whole system, which may bring difficulties in the low-light cases. In addition, an image denoising algorithm based on dynamic threshold filtering and a spectral reconstruction algorithm originated from complete orthogonal decomposition were used to remove the speckle pattern noise and recover the spectrum. The final speckle-based spectrometer has a spectral resolution of 0.6 similar to 0.016 nm depending on the different offset fusions. (C) 2020 Optical Society of America
机译:在本研究中研究了基于偏移熔融多模光纤(MMF)的近红外光谱仪。当光线通过MMF时,通过分析斑点图像来回收光谱。为了产生足够的斑点,偏振保持纤维(PMF)和30cm长MMF与垂直偏移融合。七种不同的偏移位移在光纤融合中实现。后续实验表明光纤偏移融合对光谱相关性和分辨率具有显着影响。较大的偏移融合可以激发MMF中的更多高阶模式,它大大提高了光谱仪的性能。仿真结果还表明,在MMF中激发了更多模式,并且模式号的增加导致相邻光谱通道的较低的相关系数。然而,大型偏移融合增加了整个系统的融合和插入损耗,这可能会在低轻型情况下带来困难。另外,基于动态阈值滤波的图像去噪算法和源自完全正交分解的光谱重建算法用于去除斑点图案噪声并恢复频谱。最终斑点基光谱仪的光谱分辨率为0.6,其与0.016nm相似,这取决于不同的偏移融合。 (c)2020美国光学学会

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    《Applied optics》 |2020年第15期|共6页
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