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Multimode interference effects in optical fiber for pressure sensing applications

机译:光纤在压力传感应用中的多模干涉效应

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Applications of Multimode Interference (MMI) effects in optical devices have been increased today due their excellent properties and easy fabrication. Incorporation of these effects in optical fiber has been achieved through a single-mode -multimode - single-mode (SMS) fiber structure showing high sensitivity to bending-loss phenomenon. The latter has been efficiently implemented in pressure sensing application such as is presented in this work. Basically, the SMS structure is embedded in a pressure-sensitive membrane to convert pressure in a mechanical displacement resulting in an attenuation of the transmitted intensity proportionally to the applied pressure. Under this configuration, an all-fiber pressure sensor with high sensitivity and repeatability is obtained into a pressure range from -13 psi to +13 psi. The max pressure range can be varied to 140 psi with our configuration when the membrane thickness is changed. Important features of the proposed all-fiber MMI pressure sensor are its easy-fabrication and low-cost since an inexpensive instrumentation is required.
机译:如今,由于其优异的性能和易于制造的特性,在光学设备中多模干涉(MMI)效果的应用已经增加。通过将单模-多模-单模(SMS)光纤结构显示出对弯曲损耗现象的高度敏感性,已将这些效应纳入了光纤。后者已在压力传感应用中得到了有效实施,如本工作所述。基本上,SMS结构嵌入在压敏膜中,以将压力转换为机械位移,从而导致透射强度的衰减与所施加的压力成比例。在这种配置下,可以在-13 psi至+13 psi的压力范围内获得具有高灵敏度和可重复性的全光纤压力传感器。当我们改变膜的厚度时,我们的配置可以将最大压力范围更改为140 psi。提议的全光纤MMI压力传感器的重要特征是易于制造且成本低廉,因为需要廉价的仪器。

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