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Ultra-high-sensitive sensor based on a metal-insulator-metal waveguide coupled with cross cavity

机译:基于金属绝缘体 - 金属波导的超高敏感传感器与交叉腔连接

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摘要

In this paper, a high-sensitive plasmonic sensor based on metal-insulator-metal waveguide coupled with the interesting metal nanoracetrack defects in a cross cavity is proposed and investigated. The sensing characteristics of the proposed design are analyzed by the means of finite difference time domain method which is embedded in the commercial simulator R-Soft. The positions of transmission peaks can be easily manipulated by adjusting both the radius and the distance between the centers of the two racetrack defects in the cavity. The achieved results exhibit a linear relationship between the material's refractive indices and theirs corresponding wavelengths of resonance, whereas the obtained maximum linear sensitivity is 3410 nm/RIU which corresponds to a sensing resolution as precise as 2.93 x 10(-6) RIU. The proposed sensor has great impact on different technologies advancement as it can be implemented in high performance nanosensors and bio-sensing devices.
机译:在本文中,提出了一种基于金属 - 绝缘体 - 金属波导的高敏感等离子体传感器,并研究了交叉腔中的有趣金属纳米替纳米替换缺陷。 通过嵌入在商业模拟器R-Soft中的有限差分时间域方法分析所提出的设计的感测特性。 通过调节半径和腔中的两个跑道缺陷的中心之间的半径和距离可以容易地操纵透射峰的位置。 所实现的结果表现出材料的折射率和它们对应的共振波长之间的线性关系,而获得的最大线性灵敏度是3410nm / Riu,其对应于例如2.93×10(-6)Riu的感测分辨率。 该拟议的传感器对不同技术的进步产生了很大的影响,因为它可以在高性能纳米传感器和生物传感装置中实现。

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