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Terahertz Sensor Study Based on Spoof Surface Plasmon Polaritons

机译:基于欺骗表面等离子体极化子的太赫兹传感器研究

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摘要

The spoof surface plasmon polaritons (SSPPs) structure can be used as a sensor in THz region for the biosensing. The accuracy of resonance and amplitude for sensor is very important for biosensing. The momentum matching of SSPPs determines the resonance position and the gap distance determines the amplitude. For the biomolecular sensing, the sample is positioned between the prism base and the SSPPs structure. The momentum matching condition at the current study does not consider the effect of sample refractive index and the resonance position has a significant error. Here the correction is made to the momentum matching condition which considers the effect of the sample refractive index. A comparative study of surface plasmon resonance (SPR) sensing performance based on frequency and angle variations shows that the sensing sensitivity for frequency region is superior to that of angle region; in the meanwhile, as an application of biosensors, we have detected different types of brain lesions in the frequency range. Furthermore, the reflection amplitude is related to gap size between the prism and SSPPs. The relationship of gap size and reflection amplitude is studied. By using the relationship between gap size and reflection amplitude, the amplitudes at different frequencies or incident angles for different refractivities have the same reflection dips compared to the other published results. The simulation is performed and the results proved the theory.
机译:欺骗表面等离子体Polaritons(SSPPS)结构可以用作生物传感的THz区域中的传感器。传感器的共振和幅度的准确性对于生物传感非常重要。 SSPP的势匹配确定谐振位置,间隙距离确定幅度。对于生物分子感测,样品位于棱镜基底和SSPPS结构之间。目前研究的动量匹配条件不考虑样品折射率的效果,并且谐振位置具有显着误差。这里,校正是针对样品折射率效果的动量匹配条件。基于频率和角度变化的表面等离子体共振(SPR)感测性能的比较研究表明,频率区域的感测灵敏度优于角度区域的感测灵敏度;同时,作为生物传感器的应用,我们在频率范围内检测到不同类型的脑病变。此外,反射幅度与棱镜和SSPP之间的间隙大小有关。研究了间隙大小和反射幅度的关系。通过使用间隙尺寸和反射幅度之间的关系,与其他公开的结果相比,不同折射率的不同频率或入射角的幅度具有相同的反射凹陷。执行模拟,结果证明了该理论。

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