论文标题

杂化等离子胶片传感器的超鼻涕光谱响应

Ultra-narrow spectral response of a hybrid plasmonic-grating sensor

论文作者

Elshorbagy, Mahmoud H., Cuadrado, Alexander, Garcia-Camara, Braulio, Vergaz, Ricardo, Gomez-Pedrero, Jose Antonio, Alda, Javier

论文摘要

我们配置和分析纳米结构设备,该设备杂交光栅模式和表面等离子体共振。该模型使用有效的折射指标,该指标考虑了所涉及材料的体积分数,以及通过结构的等离子体的传播深度。我们的几何形状是由电介质纳米三角形制成的挤压低阶衍射光栅。表面等离子体的谐振在金属/介电界面上激发,该金属/介电界面通过高索引介电层与分析物分离。由于超鼻中的光谱响应(低于0.1 nm),折射率传感器的光学性能在敏感性和功绩(FOM)方面具有很高的竞争力。此外,它在折射率的广泛范围内(从1.3到1.56),并且在正常发病率条件下工作。

We configure and analyze a nanostructured device that hybridizes grating modes and surface plasmon resonances. The model uses an effective index of refraction that considers the volume fraction of the involved materials, and the propagation depth of the plasmon through the structure. Our geometry is an extruded low-order diffraction grating made of dielectric nano-triangles. Surface plasmon resonances are excited at a metal/dielectric interface, which is separated from the analyte by a high-index dielectric layer. The optical performance of the refractometric sensor is highly competitive in sensitivity and figure of merit (FOM) because of the the ultra-narrow spectral response (below 0.1 nm). Moreover, it is operative within a wide range of the index of refraction (from 1.3 till 1.56), and also works under normal incidence conditions.

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