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Simulation study of extraordinary optical transmission induced by sub-wavelength nanopore arrays towards label-free biochemical analysis

机译:亚波长纳米孔阵列对无标记生物化学分析诱导的非凡光学传输的仿真研究

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Label-free optical biochemical analysis approach is an advantageous alternative to traditional label-based techniques and has a wide range of applications. Extraordinary optical transmission (EDT), another form of surface plasmonic resonance induced by sub-wavelength nanopore arrays, has recently drawn increasing attention, due to its potential in miniaturizing biochemical assay instrument. To fabricate the nanopore arrays that function as the core device for biochemical analysis, the parameters are to be determined in an optimized manner. This paper thus reports the simulation studies on two typical structures of nanopore arrays, namely, (A) a perforated metallic layer on top of a substrate, and (B) a perforated metallic layer coupled with isolated metallic disks, which have been proposed in literature. Using FDTD Solutions software, and taking into account the major factors associated with the transmitted light spectrum and intensity, this study confirms the importance of using coating on the nanopore arrays with a refractive index matching the substrate of nanopores. The simulation results also provide a quantitative comparison in performance of the structures with different parameters, in terms of spectrum shift and intensity. These data can be used to guide the optimal design of a nanopores-based optical biochemical analyzer.
机译:无标签的光学生物化学分析方法是对基于标签技术的有利替代方案,具有广泛的应用。由于其在小型化生物化学测定仪中的电位,因此,通过亚波长纳米孔阵列诱导的另一种形成的表面等离子体谐振谐振的另一种形式的表面等离子体谐振的形式。为了制造用作生物化学分析的核心装置的纳米孔阵列,应以优化的方式确定参数。因此,本文报告了纳米孔阵列的两个典型结构的模拟研究,即(a)基板顶部的穿孔金属层,(b)与分离的金属磁盘一起耦合的穿孔金属层,这些金属磁盘已经在文献中提出。使用FDTD解决方案软件,并考虑到与透射光谱和强度相关的主要因素,本研究证实在纳米孔阵列上使用涂覆在纳米孔基材上的折射率上使用涂层的重要性。在频谱移位和强度方面,仿真结果还提供了具有不同参数的结构的性能的定量比较。这些数据可用于引导基于纳米孔的光学生化分析仪的最佳设计。

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