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首页> 外文期刊>Photonics Journal, IEEE >Reflection and Transmission Modes in Nanohole-Array-Based Plasmonic Sensors
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Reflection and Transmission Modes in Nanohole-Array-Based Plasmonic Sensors

机译:基于纳米孔阵列的等离子体传感器的反射和透射模式

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Reflection and transmission modes are studied in a surface plasmon resonance (SPR) sensor, where a nanohole-array-patterned gold film is deposited on a glass substrate, and the analyte in an aqueous medium is bound onto the patterned gold film. The reflection (transmission) mode means that light illuminates the structure from the analyte (substrate) side, and the detection is fixed at the analyte side. The two modes are studied by calculating absorption (and transmission) spectra and optical field distributions of the sensor. This study shows that both modes can excite the SPR on the analyte/gold interface, which is useful for sensing. However, the optical field distribution at the resonant wavelength is different for the two modes, and the effect is dependent on the gold film thickness. Comparing the sensing performance, the reflection mode gives larger resonant optical field enhancements (32 as compared with 22), but the transmission mode uses much thinner gold films (60 nm as compared with 150 nm). The optical power flow is analyzed to understand the fundamental difference between the two modes. These findings are particularly useful to guide the design of metallic nanostructure-based plasmonic sensing systems.
机译:在表面等离振子共振(SPR)传感器中研究了反射和透射模式,其中在玻璃基板上沉积了纳米孔阵列图案的金膜,并将水性介质中的分析物结合到图案化的金膜上。反射(透射)模式是指光从分析物(基板)侧照亮结构,并且检测固定在分析物侧。通过计算传感器的吸收(和透射)光谱和光场分布来研究这两种模式。这项研究表明,两种模式都可以激发分析物/金界面上的SPR,这对于传感非常有用。但是,在两种模式下,共振波长处的光场分布是不同的,其效果取决于金膜的厚度。比较感测性能,反射模式可提供更大的共振光场增强效果(与22相比,增强了32),但透射模式使用的金膜要薄得多(与150 nm相比,金膜为60 nm)。分析光功率流以了解两种模式之间的基本差异。这些发现对于指导基于金属纳米结构的等离子传感系统的设计特别有用。

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