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Optimization of gold nanoring arrays for biosensing in the fiber-optic communication window

机译:光纤通讯窗口中用于生物传感的金纳米环阵列的优化

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To improve the limit of detection in a nanoplasmonic sensor system, the optical performance of the metal nanostructures should be optimized according to the best spectral window of the measurement instrument. We propose that the spectral window from 1460 to 1610 nm can potentially provide ultrahigh instrumental resolution for biosensing. We optimized gold nanoring arrays such that the extinction peak position is inside the proposed window, the extinction peak is sharp enough to track the peak shift with high resolution and the figure of merit (sensitivity/linewidth) of the array is optimized at the same time. The peak-sharpening effect of the array caused by coherent interaction plays a central role in the optimization. The optimized array has a lattice constant in the range [1000 nm,1060 nm], a bulk index sensitivity of around 450 nm/RIU and a figure of merit larger than 4. It is an enabling sensor element for a near-infrared sensor chip with ultrahigh resolution.
机译:为了提高纳米等离子体传感器系统中的检测极限,应根据测量仪器的最佳光谱窗口优化金属纳米结构的光学性能。我们建议从1460到1610 nm的光谱窗口可以为生物传感提供超高的仪器分辨率。我们对金纳米环阵列进行了优化,以使消光峰的位置位于建议的窗口内,消光峰足够尖锐,可以以高分辨率跟踪峰移动,并且同时优化了阵列的品质因数(灵敏度/线宽) 。由相干相互作用引起的阵列的峰锐化作用在优化中起着核心作用。经过优化的阵列具有[1000 nm,1060 nm]范围内的晶格常数,约450 nm / RIU的体指数敏感度和大于4的品质因数。它是用于近红外传感器芯片的启用传感器元件。超高分辨率。

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