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Nanocavity-Coupled Waveguide Photonic Crystal Biosensor for Detection of Hemoglobin Concentration in Blood

机译:纳米胶质耦合波导光子晶体生物传感器,用于检测血液中血红蛋白浓度的血红蛋白浓度

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Biosensor is an analytical device which is used to detect the biological analyte which can be antibodies, enzymes, cells, or biomolecules. The biosensor has many applications like in biomedical research, environmental monitoring, and healthcare. In this paper, we have designed a 2D photonic crystal biosensor with nanocavity coupled with a photonic crystal waveguide. This structure possessing hexagonal symmetry with an area of 19 x 13 μm~2 is considered. Over the wafer of air, dielectric rods of Si which have refractive index of 3.47772, radius of 210 nm, and lattice constant of 700 nm are introduced. This design is based on hemoglobin-filled nanocavity coupled with a waveguide. The biosensor can detect hemoglobin concentration in blood. Hemoglobin concentration in blood with 0, 10, and 20 g/dL is detected through the simulation and analysis. For the analysis, FDTD method is used. Change in refractive index causes a spectral shift in transmission spectra is observed. This property is useful in sensing application by considering different concentration with different refractive indices. In this work, design is allowed to operate in the wavelength range of 1500-1600 nm.
机译:生物传感器是一种分析装置,用于检测可以是抗体,酶,细胞或生物分子的生物分析物。生物传感器在生物医学研究,环境监测和医疗保健中具有许多应用。在本文中,我们设计了一种具有纳米凹凸的2D光子晶体生物传感器,纳米凹陷与光子晶体波导耦合。认为具有面积为19×13μm〜2的六边形对称的该结构。在空气的晶片上,引入具有3.47772,半径为210nm的折射率的Si的介电棒,并引入700nm的晶格常数。这种设计基于填充血红蛋白填充的纳米胶质,与波导耦合。生物传感器可以检测血液中的血红蛋白浓度。通过模拟和分析检测血红蛋白血液中的血液中的血液浓度。对于分析,使用FDTD方法。观察到折射率的变化导致透射光谱中的光谱移位。通过考虑不同折射率的不同浓度,此属性可用于检测应用。在这项工作中,允许设计在1500-1600nm的波长范围内操作。

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