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Distributed fiber-optic laser-ultrasound generation based on ghost-mode of tilted fiber Bragg gratings

机译:分布式光纤激光超声 基于倾斜光纤的鬼模式生成 布拉格光栅

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摘要

Active ultrasonic testing is widely used for medical diagnosis, material characterization and structural health monitoring. Ultrasonic transducer is a key component in active ultrasonic testing. Due to their many advantages such as small size, light weight, and immunity to electromagnetic interference, fiber-optic ultrasonic transducers are particularly attractive for permanent, embedded applications in active ultrasonic testing for structural health monitoring. However, current fiberoptic transducers only allow effective ultrasound generation at a single location of the fiber end. Here we demonstrate a fiber-optic device that can effectively generate ultrasound at multiple, selected locations along a fiber in a controllable manner based on a smart light tapping scheme that only taps out the light of a particular wavelength for laser-ultrasound generation and allow light of longer wavelengths pass by without loss. Such a scheme may also find applications in remote fiber-optic device tuning and quasidistributed biochemical fiber-optic sensing.
机译:主动超声测试被广泛用于医学诊断,材料表征和结构健康监测。超声换能器是主动超声测试中的关键组件。由于具有许多优点,例如体积小,重量轻,抗电磁干扰,光纤超声换能器特别适合永久性嵌入式应用在结构健康监控的有源超声测试中。然而,当前的光纤换能器仅允许在光纤末端的单个位置处有效地产生超声。在这里,我们演示了一种光纤设备,该设备可以基于智能光分配方案,以可控的方式在光纤的多个选定位置有效地产生超声波,该智能光分配方案仅对特定波长的光进行分束以产生激光超声并允许光较长波长的光不会损失。这样的方案还可以在远程光纤设备调整和准分布式生化光纤传感中找到应用。

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