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首页> 外文期刊>Optical engineering >Ultrahigh-sensitive multimode interference-based fiber optic liquid-level sensor realized using illuminating zero-order Bessel Gauss beam
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Ultrahigh-sensitive multimode interference-based fiber optic liquid-level sensor realized using illuminating zero-order Bessel Gauss beam

机译:利用零阶贝塞尔高斯光束照明实现基于超高灵敏度多模干涉的光纤液位传感器

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摘要

A proposal toward the enhancement in the sensitivity of a multimode interference-based fiber optic liquid-level sensor is explored analytically using a zero-order Bessel-Gauss (BG) beam as the input source. The sensor head consists of a suitable length of no-core fiber (NCF) sandwiched between two specialty high-order mode fibers. The coupling efficiency of various order modes inside the sensor structure is assessed using guided-mode propagation analysis and the performance of the proposed sensor has been benchmarked against the conventional sensor using a Gaussian beam. Furthermore, the study has been corroborated using a finite-difference beam propagation method in Lumerical's Mode Solutions software to investigate the propagation of the zero-order BG beam inside the sensor structure. Based on the simulation outcomes, the proposed scheme yields a maximum absolute sensitivity of up to 3.551 dB/mm and a sensing resolution of 2.816 × 10~(-3) mm through the choice of an appropriate length of NCF at an operating wavelength of 1.55 μm. Owing to this superior sensing performance, the reported sensing technology expedites an avenue to devise a high-performance fiber optic-level sensor that finds profound implication in different physical, biological, and chemical sensing purposes.
机译:以零阶贝塞尔-高斯(BG)光束为输入源,以解析方式探讨了提高基于多模干涉的光纤液位传感器灵敏度的建议。传感器头由适当长度的无芯光纤(NCF)夹在两根特殊的高阶模光纤之间组成。使用引导模式传播分析来评估传感器结构内部各种阶模的耦合效率,并且所提出的传感器的性能已经与使用高斯光束的常规传感器进行了基准比较。此外,该研究已通过Lumerical的Mode Solutions软件中的有限差分光束传播方法得到证实,以研究零级BG光束在传感器结构内部的传播。根据仿真结果,通过在1.55的工作波长下选择合适的NCF长度,建议的方案可产生高达3.551 dB / mm的最大绝对灵敏度和2.816×10〜(-3)mm的传感分辨率。微米由于具有这种优越的传感性能,所报道的传感技术加快了设计高性能光纤水平传感器的途径,该传感器在不同的物理,生物学和化学传感目的中都具有深远的意义。

著录项

  • 来源
    《Optical engineering》 |2018年第3期|036118.1-036118.11|共11页
  • 作者单位

    National Institute of Technology, Department of Electrical Engineering, Tripura, India;

    National Institute of Technology, Department of Electrical Engineering, Tripura, India;

    CSIR-Central Scientific Instruments Organisation, Advanced Materials and Sensors Division, Chandigarh, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    fiber optic sensors; fiber optics; sensors; modes; fiber optic applications;

    机译:光纤传感器;光纤;传感器模式;光纤应用;

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