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Mass density and the Brillouin spectroscopy of aluminosilicate optical fibers

机译:铝硅酸盐光纤的质量密度和布里渊光谱

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Provided herein is a detailed analysis of the Brillouin properties of alumina-doped silica optical fiber. The acoustic velocity of alumina in silica is shown to be a very strong function of its mass density, which can vary significantly from sample-to-sample and likely originates from the observed linear relationship between the longitudinal elastic modulus and the mass density. Further, the refractive index versus the alumina concentration provides a very sensitive probe of this mass density, and can be used to derive other structural details about the alumina. For example, for the first time to the best of our knowledge measurements of the thermo- and strain-acoustic coefficients (TAC and SAC, respectively) of the alumina dopant in silica-based fiber are presented and it is shown that these quantities are not strongly influenced by the density of alumina. Further, the material acoustic damping does not appear to be strongly influenced by the density. The TAC and SAC, or the dependence of the acoustic velocity on temperature or strain, respectively, are both found to be negative and large for alumina, in fact much larger than those for silica. Alumina thus represents a unique and potentially very useful material for the compositional tuning of the Brillouin scattering characteristics of optical fibers for distributed sensing and other applications. Conversely, these properties of alumina reduce the effectiveness of using applied temperature or strain gradients to fiber in order to suppress Brillouin scattering in fiber laser systems.
机译:本文提供了掺杂氧化铝的二氧化硅光纤的布里渊特性的详细分析。二氧化硅在二氧化硅中的声速显示出是其质量密度的非常强的函数,其随样品的不同而有很大的不同,并且很可能源自观察到的纵向弹性模量与质量密度之间的线性关系。另外,折射率对氧化铝浓度提供了这种质量密度的非常敏感的探针,并且可以用于得出关于氧化铝的其他结构细节。例如,据我们所知,这是首次提出了基于二氧化硅的纤维中氧化铝掺杂剂的热声系数和应变声系数(分别为TAC和SAC)的测量结果,但结果表明,这些量并没有受氧化铝密度的强烈影响。此外,材料的声阻尼似乎不受密度的强烈影响。对于氧化铝,TAC和SAC或声速对温度或应变的依赖性都为负值,并且很大,实际上远大于二氧化硅。因此,氧化铝代表了一种独特的,可能非常有用的材料,可用于分布式传感和其他应用的光纤布里渊散射特性的成分调整。相反,氧化铝的这些性能降低了对纤维使用施加的温度或应变梯度以抑制纤维激光系统中布里渊散射的有效性。

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