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首页> 外文期刊>IEEE sensors journal >Designing a Biosensor Using a Photonic Quasi-Crystal Fiber
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Designing a Biosensor Using a Photonic Quasi-Crystal Fiber

机译:使用光子准晶体光纤设计生物传感器

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摘要

Using finite-element method, we propose a photonic quasi-crystal fiber-based refractive index biosensor (PQF-RIBS), which works based on the surface plasmon polariton. We determine the loss spectra for two different variations of the refractive index of analyte, . From the detailed numerical analysis, we find that the PQF-RIBS exhibits a maximum refractive index sensitivity of 6000 nm/RIU and a resolution of RIU when is increased from 1.45 to 1.46. Besides, this sensor does exhibit the negative refractive index sensitivity of −4000 nm/RIU and a resolution of RIU for a sensing range from 1.52 to 1.53. Furthermore, we carry out selective filling of liquid in the selective holes of the proposed biosensor for a sensing wavelength range from 900 to 1200 nm. Finally, we also study the influence of the structural parameters, namely, diameter of the core and diameter of the air holes in the cladding over the loss spectra of a fundamental mode for a particular of 1.47.
机译:我们采用有限元方法,提出了一种基于表面等离子激元的光子准晶体光纤折射率生物传感器(PQF-RIBS)。我们确定了分析物折射率的两种不同变化的损耗光谱。从详细的数值分析中,我们发现PQF-RIBS在从1.45增加到1.46时表现出6000 nm / RIU的最大折射率灵敏度和RIU分辨率。此外,该传感器的负折射率灵敏度为-4000 nm / RIU,RIU分辨率为1.52至1.53。此外,我们在感测波长范围为900至1200 nm的生物传感器的选择性孔中进行选择性填充。最后,我们还研究了结构参数的影响,即纤芯直径和包层中气孔直径对基本模损耗谱的影响,具体为1.47。

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