论文标题

用液晶浸润的金属镜的全光可调节性

All-Optical tunability of metalenses infiltrated with liquid crystals

论文作者

Palermo, Giovanna, Lininger, Andrew, Guglielmelli, Alexa, Ricciardi, Loredana, Nicoletta, Giuseppe, De Luca, Antonio, Park, Joon-Suh, Lim, Soon Wei Daniel, Meretska, Maryna L., Capasso, Federico, Strangi, Giuseppe

论文摘要

元面积已经过广泛的设计,可以产生各种光学现象,从而使对光的传播进行了前所未有的控制。但是,它们通常被设计为单用设备,而无需修改后制作光学响应,这可能是对现实世界应用的限制。在这项工作中,我们报告了纳米结构的平面融合二氧化硅金属,该金属用列液晶(NLC)和金纳米颗粒溶液渗透。嵌入式NLC的物理特性可以使用外部刺激的应用来操纵,从而实现可重构的光学元信息。我们报告了由热 - 质量诱导的与诺米特异位相关相关的NLC溶液的变化导致金属响应的全光,动态控制。实验证明了金属焦距的连续和可逆调整,沿光轴的80 um(占5 cm标称焦距的0.16%)的变化。这是在没有设备的直接机械或电气操作的情况下实现的。将可重构的特性与焦距移动的佐证数值模拟进行了比较,并表现出密切的对应关系。

Metasurfaces have been extensively engineered to produce a wide range of optical phenomena, allowing unprecedented control over the propagation of light. However, they are generally designed as single-purpose devices without a modifiable post-fabrication optical response, which can be a limitation to real-world applications. In this work, we report a nanostructured planar fused silica metalens permeated with a nematic liquid crystal (NLC) and gold nanoparticle solution. The physical properties of embedded NLCs can be manipulated with the application of external stimuli, enabling reconfigurable optical metasurfaces. We report all-optical, dynamic control of the metalens optical response resulting from thermo-plasmonic induced changes of the NLC solution associated with the nematic-isotropic phase transition. A continuous and reversible tuning of the metalens focal length is experimentally demonstrated, with a variation of 80 um (0.16% of the 5 cm nominal focal length) along the optical axis. This is achieved without direct mechanical or electrical manipulation of the device. The reconfigurable properties are compared with corroborating numerical simulations of the focal length shift and exhibit close correspondence.

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