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Influence of the mode field diameter on the strain and temperature sensitivity of different fibres

机译:模场直径对不同光纤的应变和温度敏感性的影响

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摘要

Fibre sensitivity to the temperature, longitudinal strain or pressure, is a very important fibre feature in many applications, such as sensing application or telecommunication. The most common way to modify (either mitigate or strengthen, depending on application) this sensitivity is to change the material properties by doping or to employ microstructured fibres. In some cases the precise adjustment of a doping level and sophisticated design of air-hole arrangement is needed to obtain required features of a fibre, for example to increase sensitivity to the hydrostatic pressure and avoid cross-sensitivity to the temperature [1].
机译:光纤对温度,纵向应变或压力的敏感性是许多应用(例如传感应用或电信)中非常重要的光纤功能。修改(缓解或增强,取决于应用)此敏感性的最常见方法是通过掺杂或使用微结构化纤维来改变材料性能。在某些情况下,需要精确调整掺杂水平和气孔布置的复杂设计,以获得所需的纤维特性,例如增加对静水压力的敏感性并避免对温度的交叉敏感性[1]。

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