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Surface plasmon resonance based highly sensitive gold coated PCF biosensor

机译:基于表面等离子体共振基于高敏粘的金涂层PCF生物传感器

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摘要

A highly sensitive surface plasmon resonance-based PCF biosensor is explored in this research work. Outside the fiber frame, active plasmonic material gold (Au) with a thickness of 25 nm has been deposited which is chemically steady and is the primary sensing layer of the presented sensor. Unknown analytes could be detected by being flown on the metal surface or leaked onto the metal layer's outer surface. In this paper, we used circular airholes for external sensing of the unknown analyte. The suggested sensor obtains the maximum wavelength sensitivity of 14,500 nm / RIU in X-polarization mode and the maximum amplitude sensitivity of 4738.9 RIU~(-1) for Y-polarized mode, respectively in the spectrum of 1.35-1.41 for the analyte refractive index (RI). The lowest wavelength sensor resolution offered by this sensor is 6.9×10~(-6) RIU and the lowest amplitude sensor resolution is 2.11×10~(-6) RIU for Y-polarized mode with FOM of 387 and 364 for X and Y polarization. In the presence of a perfectly matched layer (PML), the sensing output of the presented sensor is analyzed using the finite element method (FEM) based software named COMSOL Multiphysics version 5.3a. From our simulation result, it is important to note that the proposed sensor demonstrates a noteworthy sensor performance for both polarization modes so that the choice of light sources during the practical implementation is more frequent. The findings also show some bright features that our proposed sensor can detect organic chemicals, biochemical analytes and can also be used in medical diagnostics immensely.
机译:在本研究工作中探讨了基于高度敏感的表面等离子体共振的PCF生物传感器。在纤维框架之外,已经沉积厚度为25nm的有源等离子体材料金(Au),其化学稳定,是所呈现的传感器的主要感测层。通过在金属表面上飞行或泄漏到金属层的外表面上,可以检测未知的分析物。在本文中,我们使用了用于未知分析物的外部传感的圆形空洞。建议的传感器在X偏振模式下以X偏振模式的最大波长为14,500nm / Riu,分别为分析物折射率为1.35-1.41的频谱,最大波长灵敏度为4738.9 riu〜(-1)的最大幅度灵敏度(ri)。该传感器提供的最低波长传感器分辨率为6.9×10〜(-6)RiU,最低幅度传感器分辨率为2.11×10〜(-6)Riu,用于X和Y的FOM为387和364极化。在存在完美匹配的层(PML)的情况下,使用基于COMSOL Multiphysics 5.3a的有限元方法(FEM)的软件分析所呈现的传感器的感测输出。从我们的模拟结果来看,重要的是要注意,所提出的传感器对两个极化模式表现出了值得注意的传感器性能,以便在实际实现过程中选择光源更频繁。结果还展示了我们所提出的传感器可以检测有机化学品,生化分析物的一些明亮的功能,并且也可以在医疗诊断中彻头不起。

著录项

  • 来源
    《Applied Physics》 |2021年第2期|118.1-118.12|共12页
  • 作者单位

    Department of Electrical and Electronic Engineering Islamic University of Technology Boardbazar Gazipur-1704 Bangladesh;

    Department of Electrical and Electronic Engineering Islamic University of Technology Boardbazar Gazipur-1704 Bangladesh;

    Department of Electrical and Electronic Engineering Islamic University of Technology Boardbazar Gazipur-1704 Bangladesh;

    Department of Electrical and Electronic Engineering Islamic University of Technology Boardbazar Gazipur-1704 Bangladesh;

    Department of Electrical and Electronic Engineering Islamic University of Technology Boardbazar Gazipur-1704 Bangladesh;

    Department of Electrical and Electronic Engineering Islamic University of Technology Boardbazar Gazipur-1704 Bangladesh;

    Department of Electrical and Electronic Engineering Islamic University of Technology Boardbazar Gazipur-1704 Bangladesh;

    Department of Electrical and Electronic Engineering Islamic University of Technology Boardbazar Gazipur-1704 Bangladesh;

    Department of Electrical and Electronic Engineering Islamic University of Technology Boardbazar Gazipur-1704 Bangladesh;

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

    Surface plasmon resonance; Optical fiber sensors; Photonic crystal fiber; Sensitivity; Resolution;

    机译:表面等离子体共振;光纤传感器;光子晶体纤维;灵敏度;解析度;

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