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Plasmonic circular resonators for refractive index sensors and filters

机译:等离子圆形谐振器用于折射率传感器和滤光片

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摘要

A plasmonic refractive index sensor based on a circular resonator is proposed. With all three dimensions below 1 μm, the sensor has a compact and simple structure granting it ease-of-fabrication and ease-of-use. It is capable of sensing trace amounts of liquid or gas samples. The sensing properties are investigated using finite elements method. The results demonstrate that the plasmonic sensor has a relatively high sensitivity of 1,010 nm/RIU, and the corresponding sensing resolution is 9.9 × 10−5 RIU. The sensor has a relatively high quality factor of 35, which is beneficial for identifying each transmission spectrum. More importantly, the sensitivity is not sensitive to changes of structure parameters, which means that the sensitivity of the sensor is immune to the fabrication deviation. In addition, with a transmittance of 5% at the resonant wavelength, this plasmonic structure can also be employed as a filter. In addition, by filling material like LiNbO3 or liquid crystal in the circular resonator, this filter can realize an adjustable wavelength-selective characteristic in a wide band.
机译:提出了一种基于圆形谐振器的等离激元折射率传感器。所有三个尺寸均小于1μm,该传感器具有紧凑而简单的结构,使其易于制造和易于使用。它能够感应痕量的液体或气体样品。使用有限元方法研究了传感特性。结果表明,等离激元传感器具有相对较高的灵敏度1,010nm / RIU,相应的传感分辨率为9.9×10 -5 RIU。该传感器具有相对较高的品质因数35,这对于识别每个传输频谱非常有利。更重要的是,灵敏度对结构参数的变化不敏感,这意味着传感器的灵敏度不受制造偏差的影响。另外,该等离激元结构在共振波长下的透射率为5%,也可以用作滤波器。另外,通过在圆形谐振器中填充诸如LiNbO3或液晶之类的材料,该滤波器可以在宽带中实现可调节的波长选择特性。

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