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Research on Angle Modulation Based on Nanohole Array Fiber Optic Sensor

机译:基于纳米阵列光纤传感器的角度调制研究

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Optical fiber sensor based on extraordinary optical transmission (EOT) phenomenon is widely used in chemistry,biomedicine and other fields for its intense near-field enhancement effect and high sensitivity of dielectric environment.However, processing periodic nanohole arrays structure on the fiber end face requires complicated process or expensivemicrofabrication equipments, which limits the development of optical fiber sensor based on EOT phenomenon. Strivingto solve this problem, this paper proposes the template transfer method to process metal periodic nanostructures on thefiber end surface, and further examines the influence of excitation angle on the localized surface plasma resonance(LSPR)and surface plasmon resonance(SPR) through grinding the fiber end surface into sloping structures with different angles.The experiment results show that when the Angle is 7 °, resonance excitation of fiber sensor with periodic nanoholearrays structure performs the strongest, as well as sensors achieving optimal sensing ability.
机译:基于非凡光传输(EOT)现象的光纤传感器广泛用于化学,生物医学和其他领域的强烈近场增强效果和高介质环境的敏感性。然而,在纤维端面上处理周期纳米孔阵列结构需要复杂的过程或昂贵微型切换设备,限制了基于EOT现象的光纤传感器的发展。努力奋斗为了解决这个问题,本文提出了用于处理金属周期纳米结构的模板传递方法光纤端面,进一步检查激发角度对局部表面等离子体共振(LSPR)的影响通过将纤维端面研磨成具有不同角度的倾斜结构,表面等离子体谐振(SPR)。实验结果表明,当角度为7°时,具有周期性纳米孔的光纤传感器的共振激发阵列结构执行最强,以及实现最佳感测能力的传感器。

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