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Mid-IR Hollow-core microstructured fiber drawn from a 3D printed PETG preform

机译:由3D打印PETG瓶坯拉制的中红外空心微结构纤维

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摘要

Mid-infrared (mid-IR) optical fibers have long attracted great interest due to their wide range of applications in security, biology and chemical sensing. Traditionally, research was directed towards materials with low absorption in the mid-IR region, such as chalcogenides, which are difficult to manipulate and often contain highly toxic elements. In this paper, we demonstrate a Polyethylene Terephthalate Glycol (PETG) hollow-core fiber (HCF) with guiding properties in the mid-IR. Guiding is provided by the fiber geometry, as PETG exhibits a material attenuation 2 orders of magnitude larger than the HCF propagation loss. The structured plastic fiber preforms were fabricated using commercial 3D printing technology and then drawn using a conventional fiber drawing tower. The final PETG fiber outer diameter was 466 µm with a hollow-core diameter of 225 µm. Thermal imaging at the fiber facet performed within the wavelength range 3.5–5 µm clearly indicates air guidance in the fiber hollow-core.
机译:由于中红外(mid-IR)光纤在安全性,生物学和化学传感领域的广泛应用,长期以来引起了人们的极大兴趣。传统上,研究针对中红外区吸收率低的材料,例如硫族化物,它们很难操作并且通常包含剧毒元素。在本文中,我们演示了在中红外具有导引性能的聚对苯二甲酸乙二醇酯(PETG)中空纤维(HCF)。纤维的几何形状提供了指导,因为PETG的材料衰减比HCF传播损耗大2个数量级。结构化的塑料纤维预制件是使用商业3D打印技术制造的,然后使用常规的纤维拉伸塔进行拉伸。 PETG纤维的最终外径为466μm,中空直径为225μm。在波长为3.5–5µm的光纤端面上进行的热成像清楚地表明,空气在光纤中空芯中流动。

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