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Fiber optic systems in the UV region

机译:紫外线区域的光纤系统

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摘要

Mainly due to the unexpected progress in manufacturing of solarization-reduced all-silica fibers, new fiber-optic applications in the UV-region are feasible. However, the other components like the UV-sources and the detector- systems have to be improved, too. Especially, the miniaturization is very important fitting to the small-sized fiber-optic assemblies leading to compact and mobile UV- analytical systems. Based on independent improvements in the preform and fiber processing, UV-improved fibers with different properties have been developed. The best UV-fiber for the prosed applications is selectable by its short and long-term spectral behavior, especially in the region from 190 to 350 nm. The spectrum of the UV-source and the power density in the fiber have an influence on the nonlinear transmission and the damaging level; however, hydrogen can reduce the UV-defect concentration. After determining the diffusion processes in the fiber, the UV-lifetime in commercially available all-silica fibers can be predicted. Newest results with light from deuterium-lamps, excimer- lasers and 5th harmonics of Nd:YAG laser will be shown. Many activities are in the field of UV-sources. In addition to new UV-lasers like the Nd:YAG laser at 213 nm, a new low- power deuterium-lamp with smaller dimensions has been introduced last year. Properties of this lamp will be discussed, taking into account some of the application requirements. Finally, some new applications with UV-fiber optics will be shown; especially the TLC-method can be improved significantly, combining a 2-row fiber-array with a diode-array spectrometer optimized for fiber-optics.
机译:主要是由于制造太阳能化的全二氧化硅纤维的意外进展,紫外线区域中的新型光纤应用是可行的。然而,也必须改善像UV源和探测器系统的其他组件。特别是,小型化对导致紧凑型和移动UV分析系统的小尺寸光纤组件非常重要。基于预制件和纤维处理的独立改进,已经开发了具有不同性质的UV改善的纤维。备注应用的最佳紫外线可通过其短期和长期光谱行为选择,特别是在190至350nm的区域中。纤维中的UV源和功率密度的光谱对非线性传输和破坏性水平具有影响;但是,氢气可以降低紫外线缺陷浓度。在确定纤维中的扩散过程之后,可以预测市售的全二氧化硅纤维中的紫外线。最新结果与氘 - 灯,eximer-lasers和Nd的第5次谐波的光线:将显示为YAG激光器。许多活动都在紫外线领域。除了像ND:YAG激光器这样的新UV-激光器外,去年还推出了一种具有较小尺寸尺寸的新型低功耗氘灯。将讨论此灯的属性,考虑到一些应用要求。最后,将显示一些具有UV-Fiber光学的新应用;特别是TLC方法可以显着提高,将2行光纤阵列与用于光纤优化的二极管阵列光谱仪组合。

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