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Engineering the Phase Front of Light with Phase-Change Material Based Planar lenses

机译:使用基于相变材料的平面透镜设计光的相前

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摘要

A novel hybrid planar lens is proposed to engineer the far-field focusing patterns. It consists of an array of slits which are filled with phase-change material Ge2Sb2Te5 (GST). By varying the crystallization level of GST from 0% to 90%, the Fabry-Pérot resonance supported inside each slit can be spectrally shifted across the working wavelength at 1.55 µm, which results in a transmitted electromagnetic phase modulation as large as 0.56π. Based on this geometrically fixed platform, different phase fronts can be constructed spatially on the lens plane by assigning the designed GST crystallization levels to the corresponding slits, achieving various far-field focusing patterns. The present work offers a promising route to realize tunable nanophotonic components, which can be used in optical circuits and imaging applications.
机译:提出了一种新颖的混合平面透镜来设计远场聚焦图案。它由一系列缝隙组成,这些缝隙填充有相变材料Ge2Sb2Te5(GST)。通过将GST的结晶度从0%更改为90%,每个缝隙内支撑的Fabry-Pérot共振可以在1.55μm的工作波长范围内发生光谱偏移,从而导致传输电磁相位调制大至0.56π。基于这个几何固定的平台,可以通过将设计的GST结晶水平分配给相应的狭缝,在镜头平面上在空间上构建不同的相前锋,从而获得各种远场聚焦模式。本工作为实现可调谐的纳米光子组件提供了一种有希望的途径,该组件可用于光学电路和成像应用。

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