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Single-mode perfluorinated polymer optical fibers with refractive index of 1.34 for biomedical applications

机译:生物医学应用中折射率为1.34的单模全氟化聚合物光纤

摘要

We demonstrate a technique for the fabrication of single-mode perfluorinated polymer optical fiber (PPOF). The PPOF preform is composed of poly-methyl-methacrylate (PMMA)-based outer cladding and a graded-index multimode PPOF as the core. A photosensitive graded-index single-mode PPOF with a core diameter of about 6.6 μm and cladding diameter of 400 μm was fabricated. The fiber has a cutoff wavelength of 854 nm and exhibits single-mode characteristics at wavelengths of 1310 and 1550 nm. The transmission loss is less than 0.2 dB/m in the wavelength range of 1410-1540 nm and less than 0.5 dB/m for wavelengths up to 1610 nm, significantly less than the typical transmission loss of ~ 100 dB/m for PMMA fiber. Another important feature of the PPOF is its low refractive index of 1.34, close to aqueous solution of biomaterials, permitting strong optical coupling for biomedical applications.
机译:我们演示了一种用于制造单模全氟化聚合物光纤(PPOF)的技术。 PPOF预型件由基于聚甲基丙烯酸甲酯(PMMA)的外包层和渐变折射率多模PPOF组成。制备了具有约6.6μm的芯直径和400μm的包层直径的光敏渐变折射率单模PPOF。光纤的截止波长为854 nm,并在1310和1550 nm的波长处表现出单模特性。在1410-1540 nm的波长范围内,传输损耗小于0.2 dB / m,对于高达1610 nm的波长,传输损耗小于0.5 dB / m,大大低于PMMA光纤的典型传输损耗〜100 dB / m。 PPOF的另一个重要特征是它的低折射率为1.34,接近生物材料的水溶液,可实现生物医学应用中的强光耦合。

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