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Plasmonic Waveguide Coupled Ring Cavity for a Non-Resonant Type Refractive Index Sensor

机译:非谐振型折射率传感器的等离子波导管耦合腔。

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摘要

Sensitive refractive index sensors with small footprints have been studied to allow the integration of a large number of sensors into a tiny chip for bio/chemical applications. In particular, resonant-type index sensors based on various microanocavities, which use a resonant wavelength dependence on the refractive index of the analyte, have been developed. However, the spectral linewidth of the resonance, which becomes the resolution limit, is considerably large in plasmonic cavities due to the large absorption loss of metals. Therefore, there is demand for a new type of plasmonic refractive index sensor that is not limited by the linewidth of the cavity. We propose a new type of plasmonic index sensors consisting of a channel waveguide and a ring cavity. Two emissions from the ring cavity in both directions of the waveguide couple with a reflection phase difference depending on the length of a closed right arm with a reflecting boundary. Therefore, the output power dramatically and sensitively changes as a function of the refractive index of the analyte filling the waveguide.
机译:已经研究了占地面积小的灵敏折射率传感器,以允许将大量传感器集成到用于生物/化学应用的微型芯片中。特别地,已经开发了基于各种微/纳米腔的共振型折射率传感器,其使用共振波长依赖于分析物的折射率。但是,由于金属的大量吸收损耗,在等离振子腔中,共振的谱线宽度(成为分辨率极限)非常大。因此,需要不受空腔的线宽限制的新型等离子折射率传感器。我们提出了一种新型的等离激元指数传感器,该传感器由通道波导和环形腔组成。来自环形腔的在波导的两个方向上的两个发射与反射相位差耦合,该反射相位差取决于具有反射边界的闭合右臂的长度。因此,输出功率根据填充波导的分析物的折射率而急剧而灵敏地变化。

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