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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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Abstract: 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. !29
机译:摘要:主要是由于在减少日光化作用的全硅纤维的生产中取得了意想不到的进展,因此在紫外线区域中应用新的光纤是可行的。但是,其他组件(如UV源和检测器系统)也必须改进。特别是,小型化对于小型光纤组件的装配非常重要,从而可以实现紧凑且可移动的紫外线分析系统。基于对瓶坯和纤维加工的独立改进,已开发出具有不同性能的紫外线改进纤维。通过短时和长期的光谱行为,尤其是在190至350 nm范围内,可以选择适合已应用的最佳紫外线纤维。紫外线源的光谱和光纤中的功率密度会影响非线性传输和破坏程度。但是,氢可以降低紫外线缺陷的浓度。确定纤维中的扩散过程后,可以预测市售全石英纤维中的紫外线寿命。将显示来自氘灯,准分子激光和Nd:YAG激光的5次谐波的最新结果。紫外线源领域有许多活动。除了像213 nm的Nd:YAG激光这样的新型紫外线激光器外,去年还推出了尺寸更小的新型低功率氘灯。考虑到一些应用要求,将讨论该灯的性能。最后,将展示紫外线纤维光学的一些新应用。特别是将2行光纤阵列与为光纤优化的二极管阵列光谱仪结合使用,可以显着改善TLC方法。 !29

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