A fiber-compatible spectrally encoded imaging system using a 45° tilted fiber grating

Guoqing Wang, Chao Wang, Zhi-quan Yan, Lin Zhang
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Abstract

We propose and demonstrate, for the first time to our best knowledge, the use of a 45° tilted fiber grating (TFG) as an infiber lateral diffraction element in an efficient and fiber-compatible spectrally encoded imaging (SEI) system. Under proper polarization control, the TFG has significantly enhanced diffraction efficiency (93.5%) due to strong tilted reflection. Our conceptually new fiber-topics-based design eliminates the need for bulky and lossy free-space diffraction gratings, significantly reduces the volume and cost of the imaging system, improves energy efficiency, and increases system stability. As a proof-of-principle experiment, we use the proposed system to perform an one dimensional (1D) line scan imaging of a customer-designed three-slot sample and the results show that the constructed image matches well with the actual sample. The angular dispersion of the 45° TFG is measured to be 0.054°/nm and the lateral resolution of the SEI system is measured to be 28 μm in our experiment.
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采用45°倾斜光纤光栅的光纤兼容频谱编码成像系统
据我们所知,我们首次提出并演示了在高效且光纤兼容的光谱编码成像(SEI)系统中使用45°倾斜光纤光栅(TFG)作为光纤内横向衍射元件。在适当的偏振控制下,由于倾斜反射较强,TFG的衍射效率显著提高(93.5%)。我们的概念新型基于光纤主题的设计消除了对笨重和有损的自由空间衍射光栅的需求,显着减少了成像系统的体积和成本,提高了能源效率,并增加了系统稳定性。作为原理验证实验,我们使用所提出的系统对客户设计的三槽样品进行一维(1D)线扫描成像,结果表明构建的图像与实际样品匹配良好。实验测得45°TFG的角色散为0.054°/nm, SEI系统的横向分辨率为28 μm。
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