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Analysis of Design and Fabrication Parameters for Lensed Optical Fibers as Pertinent Probes for Sensing and Imaging

机译:作为传感和成像相关探针的透镜光纤的设计和制造参数分析

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摘要

A method for adjusting the working distance and spot size of a fiber probe while suppressing or enhancing the back-coupling to the lead-in fiber is presented. As the optical fiber probe, a lensed optical fiber (LOF) was made by splicing a short piece of coreless silica fiber (CSF) on a single-mode fiber and forming a lens at the end of the CSF. By controlling the length of the CSF and the radius of lens curvature, the optical properties of the LOF were adjusted. The evolution of the beam in the LOF was analyzed by using the Gaussian ABCD matrix method. To confirm the idea experimentally, 17 LOF samples were fabricated and analyzed theoretically and also experimentally. The results show that it is feasible in designing the LOF to be more suitable for specific or dedicated applications. Applications in physical sensing and biomedical imaging fields are expected.
机译:提出了一种在抑制或增强到引入光纤的反向耦合的同时调节光纤探针的工作距离和光斑尺寸的方法。作为光纤探针,通过在单模光纤上拼接一小段无芯石英纤维(CSF),并在CSF的末端形成透镜,制成透镜光纤(LOF)。通过控制CSF的长度和透镜曲率半径,可以调节LOF的光学特性。使用高斯ABCD矩阵方法分析了LOF中光束的演变。为了通过实验确认该想法,制造了17个LOF样本,并在理论上和实验上进行了分析。结果表明,将LOF设计为更适合于特定或专用应用程序是可行的。有望在物理传感和生物医学成像领域中应用。

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