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Acoustic waves in tilted fiber Bragg gratings for sensing applications

机译:倾斜光纤布拉格光栅中的声波,用于传感应用

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Tilted fiber Bragg gratings (TFBGs) are one of the most attractive kind of optical fiber sensor technology due to their intrinsic properties. On the other hand, the acousto-optic effect is an important, fast and accurate mechanism that can be used to change and control several properties of fiber gratings in silica and polymer optical fiber. Several all-optical devices for optical communications and sensing have been successfully designed and constructed using this effect. In this work, we present the recent results regarding the production of optical sensors, through the acousto-optic effect in TFBGs. The cladding and core modes amplitude of a TFBG can be controlled by means of the power levels from acoustic wave source. Also, the cladding modes of a TFBG can be coupled back to the core mode by launching acoustic waves. Induced bands are created on the left side of the original Bragg wavelength due to phase matching to be satisfied. The refractive index (RI) is analyzed in detail when acoustic waves are turned on using saccharose solutions with different RI from 1.33 to 1.43.
机译:倾斜的光纤布拉格光栅(TFBG)由于其固有特性而成为最吸引人的光纤传感器技术之一。另一方面,声光效应是一种重要的,快速而准确的机制,可用于改变和控制二氧化硅和聚合物光纤中光纤光栅的几种特性。利用这种效果,已经成功地设计和构造了几种用于光通信和传感的全光设备。在这项工作中,我们通过TFBG中的声光效应介绍了有关光学传感器生产的最新结果。可以通过来自声波源的功率电平来控制TFBG的包层和芯模振幅。而且,TFBG的包层模式可以通过发射声波耦合回到核心模式。由于要满足相位匹配,因此会在原始布拉格波长的左侧创建感应带。当使用具有从1.33到1.43的不同RI的蔗糖溶液打开声波时,将详细分析折射率(RI)。

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