Breaking the Symmetry of a Metal–Insulator–Metal-Based Resonator for Sensing Applications

被引:0
|
作者
Chung-Ting Chou Chao
Yuan-Fong Chou Chau
Hai-Pang Chiang
机构
[1] National Taiwan Ocean University,Department of Optoelectronics and Materials Technology
[2] Universiti Brunei Darussalam,Centre for Advanced Material and Energy Sciences
来源
Nanoscale Research Letters | / 17卷
关键词
Biosensor; Circular-shaped resonator; Metal–insulator–metal waveguide; Finite element method;
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摘要
This article designed a novel multi-mode plasmonic sensor based on a metal–insulator–metal waveguide side-coupled to a circular-shaped resonator containing an air path in the resonator. The electromagnet field distributions and transmittance spectra are investigated using finite element method-based simulations. Simulation results show that an air path in the resonator's core would impact the transmittance spectrum of SPPs. Besides, the air path is crucial in offering efficient coupling and generating multiple plasmon modes in the sensor system. The proposed structure has the advantage of multi-channel, and its sensitivity, figure of merit, and dipping strength can reach 2800 nm/RIU, 333.3 1/RIU, and 86.97%, respectively. The achieved plasmonic sensor can also apply for lab-on-chip in biochemical analysis for detecting the existence or nonappearance of diabetes through the human glucose concentration in urine.
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