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Label-free slot-waveguide biosensor for the detection of DNA hybridization

机译:用于DNA杂交检测的无标记缝隙波导生物传感器

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A finite element method based on the full-vectorial H-field formulation has been employed to achieve the maximum field penetration in the sensing medium of the slot-waveguide-based ring resonator biosensor. The use of nanometer scale guiding structure where optical mode is confined in a low-index region permits a very compact sensor with high optical intensity in the region, which makes it possible to detect minimum refractive index change, and offers higher sensitivities. We analyze the change in effective refractive index of mode, sensitivity, and power confinement of the proposed slot-waveguide-based ring resonator biosensor for the detection of DNA hybridization. The biosensor exhibited theoretical sensitivity of 856 nm per refractive index unit (RIU) and a detection limit of 1.43 × 10~(-6) RIU.
机译:已经采用基于全矢量H场公式的有限元方法来实现基于缝隙波导的环形谐振器生物传感器在传感介质中的最大场穿透。使用光学模式被限制在低折射率区域中的纳米级引导结构允许在该区域中具有高光强度的非常紧凑的传感器,这使得可以检测最小的折射率变化,并提供更高的灵敏度。我们分析模式,灵敏度和功率限制的提议的基于缝隙波导的环形共振生物传感器的DNA杂交检测的有效折射率的变化。该生物传感器的理论灵敏度为每折射率单位(RIU)856 nm,检测极限为1.43×10〜(-6)RIU。

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