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PICOSECOND LASER MACHINING OF FIBER BASED SENSING DEVICES

机译:基于光纤的传感装置皮秒激光加工

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In this we demonstrate the feasibility of picosecond laser machining for the manufacture of fibre based sensing devices. Many process have shown great success in machining fused silica fibres, however, most of these involve several steps such as laser machining and etching or are based on very time consuming processes such as Focused Ion Beam (FIB) machining. These disadvantages have limited the widespread adaptation of such fibre based sensors since the manufacturing costs are high. Here we present the manufacturing of a mechanical sensor structure onto the end of a conventional telecoms single mode optical fibre with an outer diameter of 125 microns. The process shows promise towards a lower cost manufacturing route for such devices. The sensors produced are based on cantilever structures carved into the end of the fibre with an optical readout of the cantilever position by in-fibre interferometry.
机译:在此,我们证明了PICOSECOND激光加工用于制造纤维的传感装置的可行性。许多过程在加工熔融石英中取得了巨大的成功,然而,大多数这些涉及若干步骤,例如激光加工和蚀刻,或者基于非常耗时的过程,例如聚焦离子束(FIB)加工。由于制造成本高,因此这些缺点限制了这种基于纤维的传感器的广泛适应性。在这里,我们将机械传感器结构的制造呈现到传统电信单模光纤的末端,其外径为125微米。该过程显示了这种设备的低成本制造路线的承诺。产生的传感器基于悬臂结构,通过纤维干涉测量法利用悬臂位置的光学读出刮到光纤的末端。

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