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Angle-multiplexed all-dielectric metasurfaces for broadband molecular fingerprint retrieval

机译:角度复用全介电超表面用于宽带分子指纹检索

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Infrared spectroscopy resolves the structure of molecules by detecting their characteristic vibrational fingerprints. Subwavelength light confinement and nanophotonic enhancement have extended the scope of this technique for monolayer studies. However, current approaches still require complex spectroscopic equipment or tunable light sources. Here, we introduce a novel metasurface-based method for detecting molecular absorption fingerprints over a broad spectrum, which combines the device-level simplicity of state-of-the-art angle-scanning refractometric sensors with the chemical specificity of infrared spectroscopy. Specifically, we develop germanium-based high-Q metasurfaces capable of delivering a multitude of spectrally selective and surface-sensitive resonances between 1100 and 1800 cmsup?1/sup. We use this approach to detect distinct absorption signatures of different interacting analytes including proteins, aptamers, and polylysine. In combination with broadband incoherent illumination and detection, our method correlates the total reflectance signal at each incidence angle with the strength of the molecular absorption, enabling spectrometer-less operation in a compact angle-scanning configuration ideally suited for field-deployable applications.
机译:红外光谱通过检测分子的特征振动指纹来解析分子的结构。亚波长光限制和纳米光子增强已经扩展了该技术用于单层研究的范围。但是,当前的方法仍然需要复杂的光谱设备或可调光源。在这里,我们介绍了一种新颖的基于超表面的方法来检测广谱上的分子吸收指纹,该方法结合了最新的角度扫描折光传感器的设备级简便性和红外光谱的化学特异性。具体来说,我们开发了基于锗的高Q超表面,能够在1100 cm至1800 cm ?1 之间提供多种光谱选择性和表面敏感的共振。我们使用这种方法来检测不同相互作用的分析物(包括蛋白质,适体和聚赖氨酸)的不同吸收特征。结合宽带非相干照明和检测,我们的方法将每个入射角的全反射率信号与分子吸收强度相关联,从而使紧凑型角度扫描配置中的无光谱仪操作成为了现场应用的理想选择。

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