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首页> 外文期刊>Applied Physics Letters >Coupling of surface waves in highly defined one-dimensional porous silicon photonic crystals for gas sensing applications
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Coupling of surface waves in highly defined one-dimensional porous silicon photonic crystals for gas sensing applications

机译:用于气体传感应用的高清晰度一维多孔硅光子晶体中的表面波耦合

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We describe the use of one-dimensional porous silicon (p-Si) photonic crystals for guiding TE-polarized surface electromagnetic waves (SEWs). Although bulk and interface roughnesses might deteriorate the optical response of photonic structures, we observed reflection spectra presenting narrow (approx< 6 nm) reflectivity anomalies associated with SEWs. In analogy with surface plasmons, SEWs are strongly sensitive to surface modifications. As a proof of principle for a sensor, we provide a direct real-time monitoring of the reversible interactions of organic vapors with the p-Si multilayer. We highlight the higher sensitivity of the SEW-based detection scheme as compared to a method exploiting perturbations of waveguide modes.
机译:我们描述了使用一维多孔硅(p-Si)光子晶体来引导TE极化表面电磁波(SEWs)。尽管体积和界面粗糙度可能会恶化光子结构的光学响应,但我们观察到反射光谱呈现与SEW相关的狭窄(约<6 nm)反射率异常。与表面等离子体激元类似,SEW对表面修饰非常敏感。作为传感器的原理证明,我们提供了有机硅与p-Si多层膜可逆相互作用的直接实时监控。我们强调与使用波导模式扰动的方法相比,基于SEW的检测方案具有更高的灵敏度。

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