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Tunable mid-infrared optical resonator on nanopatterned chalcogenide glasses

机译:纳米图案硫属化物玻璃上的可调中红外光学谐振器

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We present the incorporation into the chalcogenide glasses of two-dimensional periodic nanopattems to realize the first of a kind chalcogenide-based planar optical mid-infrared tunable resonant structure. Chalcogenide (ChG) glasses are promising for infrared photonics owing to their transparency in visible to far infrared, where various biomolecules and gases have their characteristic absorption lines, arising from rotational-vibrational transitions. The region of the electromagnetic spectrum in which this absorption occurs, the amount of absoiption, and the specific characteristics of the absorption curve are unique to each gas. Thus, gases can be fingerprinted using their absorption characteristics. Utilizing the mid-IR resonance feature of our nanopatterned ChG glass, an innovative approach is proposed to achieve selective gas sensing through the tuning of the sensor resonance, providing an inbuilt selectivity. As an illustration, the presented chalcogenide-based nanostructure is customized to match its resonance wavelength with the absorption band of gaseous methanol, a key plant health indicator. The highly concentrated electromagnetic field at the nanostructure surface allows highly sensitive detection of the target analyte methanol.
机译:我们提出了二维周期性纳米图案到硫族化物玻璃中的掺入,以实现一种基于硫族化物的平面光学中红外可调谐振结构中的第一种。硫属化物(ChG)玻璃由于对可见光至远红外具有透明性而在红外光子学中很有前景,在这种情况下,各种生物分子和气体具有其特征性的吸收线,这些吸收线是由旋转振动跃迁引起的。对于每种气体,在其中发生这种吸收的电磁波谱区域,吸收量和吸收曲线的特定特性是唯一的。因此,可以利用气体的吸收特性对气体进行指纹识别。利用我们的纳米图案ChG玻璃的中红外共振特性,提出了一种创新方法,可通过调节传感器共振来实现选择性气体传感,从而提供内置的选择性。作为说明,提出的基于硫属化物的纳米结构是经过定制的,以使其共振波长与气态甲醇的吸收带(一种重要的植物健康指标)相匹配。纳米结构表面上高度集中的电磁场可以对目标分析物甲醇进行高度灵敏的检测。

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