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Light-tunable Fano resonance in metal-dielectric multilayer structures

机译:金属介电多层结构中的光可调Fano共振

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摘要

High-Q optical Fano resonances realized in a variety of plasmonic nanostructures and metamaterials are very much promising for the development of new potent photonic devices, such as optical sensors and switches. One of the key issues in the development is to establish ways to effectively modulate the Fano resonance by external perturbations. Dynamic tuning of the Fano resonance applying the mechanical stress and electric fields has already been demonstrated. Here, we demonstrate another way of tuning, i.e., photo-tuning of the Fano resonance. We use a simple metal-dielectric multilayer structure that exhibits a sharp Fano resonance originating from coupling between a surface plasmon polariton mode and a planar waveguide mode. Using a dielectric waveguide doped with azo dye molecules that undergo photoisomerization, we succeeded in shifting the Fano resonance thorough photo-modulation of the propagation constant of the waveguide mode. The present work demonstrates the feasibility of photo-tuning of the Fano resonance and opens a new avenue towards potential applications of the Fano resonance.
机译:在各种等离激元纳米结构和超材料中实现的高Q光学Fano共振对于开发新型强效光子器件(例如光学传感器和开关)非常有前途。开发中的关键问题之一是建立通过外部扰动有效调制Fano共振的方法。已经证明了通过机械应力和电场对Fano共振进行动态调谐。在这里,我们展示了另一种调谐方式,即Fano共振的光调谐。我们使用一种简单的金属-电介质多层结构,该结构表现出源自表面等离振子极化模式和平面波导模式之间耦合的尖锐Fano共振。使用掺杂有经历光异构化的偶氮染料分子的电介质波导,我们成功地通过光调制波导模式的传播常数彻底改变了Fano共振。目前的工作证明了对Fano共振进行光调谐的可行性,并为Fano共振的潜在应用开辟了一条新途径。

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