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用于太赫兹波可调光学活性的基于微流体的软超表面

Microfluid-based soft metasurface for tunable optical activity in THz wave.

作者信息

Zhang Wu, Zhang Bingzhi, Fang Xiaohui, Cheng Kejun, Chen Weiqian, Wang Zihuang, Hong Dou, Zhang Meng

出版信息

Opt Express. 2021 Mar 15;29(6):8786-8795. doi: 10.1364/OE.420660.

Abstract

Metasurfaces are usually planar structures and do not possess intrinsic chirality and therefore hardly generate optical activity. Here we realized a tunable optical activity in a terahertz wave through a microfluid-based soft metasurface. The meta-atom is a chiral structured microchannel made of soft polydimethylsiloxane and injected with the liquid metal Galinstan. A microfluid pressure system is bonded to the metasurface to reconfigure all meta-atoms simultaneously. By pumping glycerol liquid into the pressure system, the metasurface is deformed from a planar structure to a three dimensional one, which manifests intrinsic chirality for optical activity realization. By controlling the injected glycerol volume, a polarization rotation from 0°to 14° at 0.19 THz is demonstrated. The soft metasurface with tunable optical activity can be flexibly applied in various applications such as polarization microscopy, bio-detection and material analysis, etc.

摘要

超表面通常是平面结构,不具有固有手性,因此很难产生光学活性。在此,我们通过基于微流体的软超表面在太赫兹波中实现了可调谐光学活性。元原子是由柔软的聚二甲基硅氧烷制成的手性结构微通道,并注入了液态金属镓铟锡合金。一个微流体压力系统与超表面相连,以便同时重新配置所有元原子。通过将甘油液体泵入压力系统,超表面从平面结构变形为三维结构,这表现出用于实现光学活性的固有手性。通过控制注入的甘油体积,在0.19太赫兹频率下实现了从0°到14°的偏振旋转。具有可调谐光学活性的软超表面可以灵活应用于各种应用,如偏振显微镜、生物检测和材料分析等。

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