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Breakdown Limits Of Optical Multimode Fibers For The Application Of Nanosecond Laser Pulses At 532 Nm And 1064 Nm Wavelength

机译:波长532 Nm和1064 Nm的纳秒激光脉冲应用的光学多模光纤的击穿极限

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摘要

For many applications, optical multimode fibers are used for the transmission of powerful laser radiation. High light throughput and damage resistance are desirable. Laser-induced breakdown at the end faces of fibers can limit their performance. Therefore, the determination of laser-induced damage thresholds (LIDT) at the surface of fibers is essential. Nanosecond (1064 nm and 532 nm wavelength) single-shot LIDT were measured according to the relevant standard on SiO_2 glass preforms (Suprasil F300) as basic materials of the corresponding fibers. For 10 kinds of fused silica fibers (FiberTech) with core diameters between 180 μm and 600 μm, an illumination approach utilizing a stepwise increase of the laser fluence on a single spot was used. For both wavelengths, the LIDT values (0% damage probability) obtained by means of the two methods were compared. The influence of surface preparation (polishing) on damage resistance was investigated. For equal surface finishing, a correlation between drawing speed of the fibers and their surface LIDT values was found. In addition to the surface measurements, bulk LIDT were determined for the preform material.
机译:对于许多应用,光学多模光纤用于传输强大的激光辐射。高光通量和抗破坏性是期望的。光纤端面的激光诱导击穿会限制其性能。因此,确定纤维表面的激光诱导损伤阈值(LIDT)是必不可少的。根据相关标准,在作为相应纤维基础材料的SiO_2玻璃预成型坯(Suprasil F300)上测量了纳秒级(1064 nm和532 nm波长)单次LIDT。对于芯直径在180μm和600μm之间的10种熔融石英纤维(FiberTech),使用了一种在单个光斑上逐步增加激光能量密度的照明方法。对于两种波长,都比较了通过两种方法获得的LIDT值(0%损坏概率)。研究了表面处理(抛光)对抗损伤性的影响。为了获得相等的表面光洁度,发现了纤维的拉伸速度与其表面LIDT值之间的相关性。除了表面测量之外,还确定了瓶坯材料的大体积LIDT。

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