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Highly Sensitive Biochemical Sensor Based on Two-Layer Dielectric Loaded Plasmonic Microring Resonator

机译:基于两层电介质负载等离子体微管谐振器的高敏感生化传感器

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摘要

In this paper, we propose and design a highly sensitive optical biochemical sensor based on two-layer dielectric loaded surface plasmon polariton waveguide (TDLSPPW)-based microring resonator (MRR). By optimizing the structure parameters, the propagation length of the proposed waveguide is ~126 μm, which is about 3 times of that of the polymer dielectric loaded surface plasmon polariton waveguide (DLSPPW) reported. It is demonstrated that the TDLSPPW-based MRR is operated at the under-coupling state, along with the quality factor (Q) of 541.2 and extinction ratio (ER) of 12.2 dB. Moreover, the Q and ER are much more sensitive to the structure parameters of the waveguide, including the waveguide width w, total thickness t, and coupling gap Wgap, compared to the low refractive index (RI) layer thickness t2. The simulation results on the biochemical RI sensing show that the sensitivities of 408.7 and 276.4 nm/RIU for glucose concentration in urine and chemical gases can be achieved, respectively. It is believed that the proposed sensor has potential applications in photonic-integrated biochemical sensing.
机译:在本文中,我们提出并设计了基于两层介电加载的表面高度敏感的光学生物化学传感器等离子激元波导(TDLSPPW)基微环谐振器(MRR)。通过优化结构参数,所提出的波导的传播长度为〜126微米,这是大约的,该聚合物电介质加载的表面的等离子激元波导(DLSPPW)报道3次。证明基于TDLSPW的MRR在底部耦合状态下操作,以及541.2的质量因数(Q)和12.2dB的消光比(ER)。此外,与低折射率(RI)层厚度T2相比,Q和ER对波导的结构参数更敏感,包括波导宽度W,总厚度T和耦合间隙WGAP。在生化RI检测显示该模拟结果的408.7和276.4处的灵敏度/ RIU在尿和化学气体的葡萄糖浓度可以分别实现,。据信,所提出的传感器在光子集成的生化感测中具有潜在的应用。

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