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Miniaturization of acoustic vector sensors enabled by viscous fluids: Towards fiber laser hair sensors

机译:粘性流体可实现声矢量传感器的小型化:朝向光纤激光头发传感器

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We demonstrate a path towards the miniaturization of fiber-optic acoustic sensors based on simple cantilever designs. The reduction in response due to miniaturization is offset by the introduction of a viscous fluid around the cantilever, which changes the dominant driving force and introduces damping. This dramatically changes the response and enables responses 10 times greater than otherwise expected, as well as increased operating bandwidth. We show the performance of several different cantilever sensors and the effect of different viscous fluids on their acoustic response. Theoretical modeling results show excellent agreement with our measured data.
机译:基于简单的悬臂设计,我们展示了朝向光纤声学传感器小型化的路径。由于小型化引起的响应的减少是通过引入悬臂周围的粘性流体而抵消,这改变了显性驱动力并引入阻尼。这显着地改变了响应,并使响应大于否则预期的10倍,以及增加的操作带宽。我们展示了几种不同的悬臂传感器的性能和不同粘性流体对声反应的影响。理论建模结果与我们的测量数据显示出很好的一致性。

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