首页> 外文会议>Conference on fiber lasers VI: Technology, systems, and applications; 20090126-29; San Jose, CA(US) >Yb doped silica based laser fibers: Correlation of photodarkening kinetics and related optical properties with the glass composition
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Yb doped silica based laser fibers: Correlation of photodarkening kinetics and related optical properties with the glass composition

机译:掺Yb的二氧化硅基激光纤维:光暗化动力学和相关光学性质与玻璃成分的关系

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摘要

In the last years, photodarkening in ytterbium doped silica based laser fibers turned out to be a critical factor for high power laser action. Several investigations have been carried out in order to characterize the time dependent increase of the fiber loss and to understand and model the complex optical phenomenon. Despite of progress in this field, there is still a lack of data concerning the detailed influence of fiber composition and preparation process parameters as well as concerning the role of atomic defects in the core glass. Here we report on investigations about the photodarkening in dependence on the glass composition of the fiber laser core. By MCVD, fibers with different codopants (additional to the active ytterbium doping) have been prepared in a well-defined manner, regarding process parameters and glass composition, and comprehensively characterized. In addition to the photodarkening measurements, further optical properties have been measured on the fibers and fiber performs, which are related to the photodarkening effect: intensity and spectral behaviour of the Yb~(3+) absorption and emission in the NIR, cooperative visible fluorescence, UV absorption and UV excited visible emission. The concentration of codopants which are commonly used for active and passive lightguide fibers (aluminium, germanium, phosphorus) was systematically varied and correlated with the optical properties.
机译:在过去的几年中,掺do二氧化硅基激光光纤的光暗化被证明是高功率激光作用的关键因素。为了表征随时间变化的光纤损耗增加并理解和模拟复杂的光学现象,已经进行了一些研究。尽管在该领域取得了进展,但是仍然缺乏有关纤维成分和制备工艺参数的详细影响以及原子缺陷在芯玻璃中的作用的数据。在这里,我们报告了有关光变暗的研究,该变暗取决于光纤激光芯的玻璃成分。通过MCVD,就工艺参数和玻璃成分而言,已经以明确定义的方式制备了具有不同共掺杂物的纤维(除活性掺杂外),并对纤维进行了全面表征。除了进行光暗化测量外,还对纤维和纤维性能进行了进一步的光学性能测定,这与光暗化效应有关:近红外中Yb〜(3+)吸收和发射的强度和光谱行为,协同可见荧光,紫外线吸收和紫外线激发的可见光发射。系统地改变了主动和被动光导纤维(铝,锗,磷)中常用的共掺杂物的浓度,并将其与光学性能相关联。

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