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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Investigation of a multimode interference-based high-sensitivity refractive index sensor realized by shining a zero-order Bessel-Gauss beam
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Investigation of a multimode interference-based high-sensitivity refractive index sensor realized by shining a zero-order Bessel-Gauss beam

机译:通过闪耀零级贝塞尔高斯梁实现的基于多模干扰的高灵敏度折射率传感器的研究

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摘要

A novel multimode interference-based refractive index sensor in a higher-order-mode-no-core-higher-order-mode fiber structure achieved by shining a zero-order Bessel-Gauss beam is reported here. The effect of higher-order mode coupling on the performance of the proposed sensor is investigated and verified numerically. Based on the simulation results, the proposed sensing scheme offers a very high sensing resolution of 5.54 x 10(-6) RIU over the refractive index range of 1.33-1.42 for a no-core fiber length of 15 mm. So, the sensor we proposed has significant advantages in the field of any physical, biological, and chemical sensing purposes as it provides measurement with very high sensitivity. (C) 2017 Optical Society of America
机译:这里报道了一种新颖的基于多模的折射率折射率传感器,其通过闪耀零级贝塞尔高斯光束而实现的高阶模式 - 无核 - 高阶模式光纤结构。 高阶模式耦合对所提出的传感器性能的影响,并在数值上进行验证。 基于仿真结果,所提出的传感方案在折射率范围为1.33-1.42的折射率范围内提供非常高的感测分辨率,对于无核心纤维长度为15mm。 因此,我们提出的传感器在任何物理,生物学和化学和化学传感目的领域具有显着的优势,因为它提供了非常高的灵敏度的测量。 (c)2017年光学学会

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