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A plasmonic 'ac Wheatstone bridge' circuit for high-sensitivity phase measurement and single-molecule detection

机译:等离子体“交流惠斯通电桥”电路,用于高灵敏度相位测量和单分子检测

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摘要

In this paper, a plasmonic “ac Wheatstone bridge” circuit is proposed and theoretically modeled for the first time. The bridge circuit consists of three metallic nanoparticles, shaped as rectangular prisms, with two nanoparticles acting as parallel arms of a resonant circuit and the third bridging nanoparticle acting as an optical antenna providing an output signal. Polarized light excites localized surface plasmon resonances in the two arms of the circuit, which generate an optical signal dependent on the phase-sensitive excitations of surface plasmons in the antenna. The circuit is analyzed using a plasmonic coupling theory and numerical simulations. The analyses show that the plasmonic circuit is sensitive to phase shifts between the arms of the bridge and has the potential to detect the presence of single molecules.
机译:在本文中,首次提出了等离子体“交流惠斯通电桥”电路,并进行了理论建模。桥接电路由三个形状为矩形棱柱的金属纳米粒子组成,其中两个纳米粒子充当谐振电路的平行臂,而第三个桥接纳米粒子充当提供输出信号的光学天线。偏振光在电路的两个臂中激发局部表面等离振子共振,从而根据天线中表面对等离激元的相敏激发产生光信号。使用等离激元耦合理论和数值模拟分析电路。分析表明,等离激元电路对桥臂之间的相移很敏感,并且有可能检测单个分子的存在。

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