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首页> 外文期刊>Plasmonics >High Performance Infrared Plasmonic Metamaterial Absorbers and Their Applications to Thin-film Sensing
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High Performance Infrared Plasmonic Metamaterial Absorbers and Their Applications to Thin-film Sensing

机译:高性能红外等离子超材料吸收剂及其在薄膜传感中的应用

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摘要

Plasmonic metamaterial absorbers (PMAs) have attracted considerable attention for developing various sensing devices. In this work, we design, fabricate and characterize PMAs of different geometrical shapes operating in mid-infrared frequencies, and explore the applications of the PMAs as sensor for thin films. The PMAs, consisting of metal-insulator-metal stacks with patterned gold nanostructured surfaces (resonators), demonstrated high absorption efficiency (87 to 98 %) of electromagnetic waves in the infrared regime. The position and efficiency of resonance absorption are dependent on the shape of the resonators. Furthermore, the resonance wavelength of PMAs was sensitive to the thin film coated on the surface of the PMAs, which was tested using aluminum oxide (Al2O3) as the film. With increase of the Al2O3 thickness, the position of resonance absorption shifted to longer wavelengths. The dependence of the resonant wavelength on thin film thickness makes PMAs a suitable candidate as a sensor for thin films. Using this sensing strategy, PMAs have potential as a new method for thin film detection and in situ monitoring of surface reactions.
机译:等离子体超材料吸收器(PMA)在开发各种传感设备方面​​引起了相当大的关注。在这项工作中,我们设计,制造和表征在中红外频率下工作的不同几何形状的PMA,并探索PMA作为薄膜传感器的应用。由具有图案化金纳米结构表面(谐振器)的金属-绝缘体-金属叠层组成的PMA在红外条件下显示出高的电磁波吸收效率(87%至98%)。共振吸收的位置和效率取决于共振器的形状。此外,PMA的共振波长对涂在PMA表面的薄膜敏感,这是使用氧化铝(Al2O3)作为薄膜进行测试的。随着Al2O3厚度的增加,共振吸收的位置转移到更长的波长。谐振波长对薄膜厚度的依赖性使PMA成为薄膜传感器的合适候选者。使用这种传感策略,PMA有望成为薄膜检测和表面反应原位监测的新方法。

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