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首页> 外文期刊>Sensors Journal, IEEE >Optimized Double-Layered Grating Structures for Chem/Biosensing in Midinfrared Range
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Optimized Double-Layered Grating Structures for Chem/Biosensing in Midinfrared Range

机译:优化的双层光栅结构,用于中红外范围的化学/生物传感

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摘要

Double-layered grating structures (DGSs) fabricated of gold (Au) and silver (Ag), respectively, are proposed for chem/biosensing in the midinfrared range. The geometry parameters of the DGS sensors are optimized using a rigorous coupled wave analysis method such that the minimum reflectance is obtained at an infrared wavelength of 4.8 (mu ) or 6.7 (mu ) m. The magnetic field patterns and Poynting vector distributions within the optimized grating structures are examined using a finite-difference time-domain method. The simulation results show that for a resonant wavelength of 4.8 (mu ) m, the Au and Ag sensors both have a sensitivity of 2000 nm/RIU (refractive index unit) and 3000 nm/RIU theoretical sensing resolution of 5 (times 10^{-6}) RIU and of 1 (times 10^{-7}) RIU, respectively. Similarly, for a resonant wavelength of 6.7 (mu ) m, the two sensors have a sensitivity of around 200 nm/RIU and theoretical resolution of 5 (times 10^{-5}) RIU. In other words, the sensitivity of the DGS sensors optimized for an infrared wavelength of 4.8 (mu ) m is one order higher than that of the sensors optimized for a wavelength of 6.7 (mu ) m. In general, the results presented in this paper show that the proposed DGS sensors provide a simple and versatile solution for performing chem/biosensing at midinfrared wavelengths.
机译:提出了分别由金(Au)和银(Ag)制成的双层光栅结构(DGS),用于中红外范围的化学/生物传感。使用严格的耦合波分析方法优化DGS传感器的几何参数,以便在4.8 (mu) 或6.7 (mu) m。使用有限差分时域方法检查了优化光栅结构内的磁场模式和Poynting矢量分布。仿真结果表明,对于共振波长为4.8 (mu) m的波长,Au和Ag传感器均具有2000 nm / RIU(折光率单位)的灵敏度和3000 nm / RIU的理论感测分辨率为5 (乘以10 ^ {-6}) RIU和1个 (乘以10 ^ {-7}) RIU,分别。同样,对于6.7 (mu) m的谐振波长,两个传感器的灵敏度约为200 nm / RIU和5个 (乘以10 ^ {-5}) RIU的理论分辨率。换句话说,针对4.8 (mu) m的红外波长优化的DGS传感器的灵敏度是1比针对6.7 (mu) m的波长进行优化的传感器要高一个数量级。总的来说,本文提出的结果表明,提出的DGS传感器为在中红外波长下进行化学/生物传感提供了一种简单而通用的解决方案。

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