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Influence of InGaZnO Films with Different Ratios on Refractive Index Sensing Characteristics of LPFG

机译:不同比率对LPFG折射率感应特性的不同比例的影响

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Sensitive materials are widely used in the field of optical fiber sensing because of their unique advantages such as rich types, controllable composition ratio and diverse structure distribution. In this paper, the surface of long-period fiber gratings with InGaZnO [(In2O3):(Ga2O3):(ZnO)] nano films with different compositions were coated by pulse laser deposition (PLD) technology. The best sensing ratio and the high sensitivity sensing of the refractive index of long-period fiber grating (LPFG) were achieved through the analysis of the influence of different ratios of InGaZnO nano films on the refractive index sensing characteristics of grating. High sensitivities of 337 nm/RIU (refractive index unit) and 145 dB/RIU of the LPFG are achieved when the best doping ratio of InGaZnO is 7:1:2.
机译:敏感材料广泛应用于光纤感应领域,因为它们具有丰富的类型,可控的组成比和不同的结构分布等优点。在本文中,通过脉冲激光沉积(PLD)技术涂覆具有不同组合物的长期光纤光栅的长期光纤光栅的表面,用不同组合物覆盖纳米膜。通过分析InGazno纳米膜对光栅折射率感测特性的不同比率的影响,实现了长期光纤光栅(LPFG)折射率的最佳感测比和高灵敏度感测。当InGazno的最佳掺杂比为7:1:2时,实现了337nm / Riu(折射率单元)和145dB / Riu的高敏感性。

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