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Nanoantenna harmonic sensor: theoretical analysis of contactless detection of molecules with light

机译:纳米天线谐波传感器:无接触检测光分子的理论分析

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摘要

The nonlinear harmonic sensor is a popular wireless sensor and radiofrequency identification (RFID) technique, which allows high-performance sensing in a severe interference/clutter background by transmitting a radio wave and detecting its modulated higher-order harmonics. Here we introduce the concept and design of optical harmonic tags based on nonlinear nanoantennas that can contactlessly detect electronic (e.g. electron affinity) and optical (e.g. relative permittivity) characteristics of molecules. By using a dual-resonance gold-molecule-silver nanodipole antenna within the quantum mechanical realm, the spectral form of the second-harmonic scattering can sensitively reveal the physical properties of molecules, paving a new route towards optical molecular sensors and optical identification (OPID) of biological, genetic, and medical events for the 'Internet of Nano-Things'.
机译:非线性谐波传感器是一种流行的无线传感器和射频识别(RFID)技术,它可以通过发送无线电波并检测其调制的高次谐波,在严重的干扰/杂波背景下进行高性能感测。在这里,我们介绍了基于非线性纳米天线的光学谐波标签的概念和设计,它们可以非接触地检测分子的电子(例如电子亲和力)和光学(例如相对介电常数)特性。通过在量子力学领域内使用双共振金分子银纳米偶极子天线,二次谐波散射的光谱形式可以灵敏地揭示分子的物理特性,为光学分子传感器和光学识别(OPID)铺平了道路。 )有关“纳米事物的互联网”的生物,遗传和医学事件。

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