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Thermal stress anomaly in rare-earth-doped fiber materials for high- power fiber lasers codoped with aluminum and phosphorus

机译:掺铝和磷的高功率光纤激光器用稀土掺杂光纤材料的热应力异常

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It is well known that thermal stress can significantly influence the properties of optical fibers. These stresses are caused by variations in the coefficient of thermal expansion (CTE) of the differently doped areas in the fiber, like the core and the cladding. On the one hand, the stress has a strong effect on the mechanical stability of fibers. On the other hand, the stress also modifies the most essential property of a fiber, the refractive index distribution, and therefore also the propagation properties. Similar to the effect of generation of birefringence in polarisation maintaining fibers, thermal stress also generates changes in the refractive index of the differently doped regions in the fiber.rnWe report on results of non-destructive polarimetric stress measurements in ytterbium doped fiber preforms, that are codoped with aluminum as well as with phosphorus. Simple models of changes in the CTE for samples doped with multiple elements assume an additive superposition of the changes caused by each dopant. In contrast to such simple models, our investigations have shown that the induced stress cannot be explained by an additive change in the CTE of the glass material. The occurring stresses turn out to be smaller than the simple sum of the effects generated by the respective dopants. This result is also in agreement with measurements of the refractive index profile of these samples. The changes in the index are again not additive for doping with both aluminum and phosphorus.
机译:众所周知,热应力会显着影响光纤的性能。这些应力是由光纤中不同掺杂区域(如纤芯和包层)的热膨胀系数(CTE)变化引起的。一方面,应力对纤维的机械稳定性有很大的影响。另一方面,应力还改变了纤维的最基本特性,折射率分布,因此也改变了传播特性。与在保偏光纤中产生双折射的效果相似,热应力还会在光纤中不同掺杂区域的折射率中产生变化。我们报道了掺do光纤预制棒中非破坏性极化应力测量的结果,即与铝以及磷共掺杂。对于掺杂有多种元素的样品,其CTE变化的简单模型假定每种掺杂物引起的变化具有叠加性。与这种简单模型相反,我们的研究表明,感应应力不能用玻璃材料CTE的附加变化来解释。事实证明,所产生的应力小于各个掺杂剂产生的效应的简单总和。该结果也与这些样品的折射率分布的测量结果一致。指数的变化再次对于铝和磷的掺杂不是加和的。

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