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Tunability and Sensing Properties of Plasmonic/1D Photonic Crystal

机译:等离子体/ 1D光子晶体的可调性和传感特性

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摘要

Gold/one-dimensional photonic crystal (Au/1D-PC) is fabricated and applied for sensitive sensing of glucose and different chemical molecules of various refractive indices. The Au layer thickness is optimized to produce surface plasmon resonance (SPR) at the right edge of the photonic band gap (PBG). As the Au deposition time increased to 60 sec, the PBG width is increased from 46 to 86 nm in correlation with the behavior of the SPR. The selectivity of the optimized Au/1D-PC sensor is tested upon the increase of the environmental refractive index of the detected molecules. The resonance wavelength and the PBG edges increased linearly and the transmitted intensity increased nonlinearly as the environment refractive index increased. The SPR splits to two modes during the detection of chloroform molecules based on the localized capacitive coupling of Au particles. Also, this structure shows high sensitivity at different glucose concentrations. The PBG and SPR are shifted to longer wavelengths, and PBG width is decreased linearly with a rate of 16.04 Å/(μg/mm3) as the glucose concentration increased. The proposed structure merits; operation at room temperature, compact size, and easy fabrication; suggest that the proposed structure can be efficiently used for the biomedical and chemical application.
机译:制作了金/一维光子晶体(Au / 1D-PC),并将其用于葡萄糖和各种折射率的不同化学分子的灵敏感测。 Au层的厚度经过优化,可在光子带隙(PBG)的右边缘产生表面等离子体共振(SPR)。随着Au沉积时间增加到60μsec,PBG宽度从46纳米增加到86μnm,这与SPR的行为有关。优化的Au / 1D-PC传感器的选择性是根据检测到的分子的环境折射率的增加来测试的。随着环境折射率的增加,共振波长和PBG边缘线性增加,透射强度非线性增加。基于金颗粒的局部电容耦合,在氯仿分子检测过程中,SPR分为两种模式。而且,该结构在不同的葡萄糖浓度下显示出高灵敏度。 PBG和SPR移到更长的波长,并且随着葡萄糖浓度的增加,PBG宽度以16.04Å/(μg/ mm 3 )的速率线性减小。拟议的结构是值得的;在室温下操作,尺寸紧凑,易于制造;这表明所提出的结构可以有效地用于生物医学和化学应用。

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