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    • 摘要: 手征超表面是由具有特定电磁响应的平面手征单元结构构成的超薄超材料,由于其具有自由控制电磁波的奇异能力而引起了极大的关注。通过在超表面设计中加入可调谐材料,可以实现其功能受外部激发控制的可调谐或可重构的超器件,为动态调谐电磁波开辟了新的道路。本文介绍了可调/可重构手征超表面电磁特性的一些理论基础,当线偏振光进入可调谐手征超表面时,会被分解为左旋圆偏振(LCP)波和右旋圆偏振(RCP)波,通过外部环境改变介质的介电常数和磁导率,超表面光器件可以动态地控制各种偏振光特别是圆偏振光的响应特性如折射率、二色性、旋光性、不对称传输等。按照可调谐手征超表面所控制的负折射率、圆二色性和旋光性、不对称传输性质,对其最新的研究进展进行了综述。最后,对可调谐手征超表面这一快速发展领域未来可能的发展方向和存在的挑战提出了自己的看法。

       

      Abstract: Chiral metasurfaces are ultra-thin metamaterials composed of planar chiral cell structures with specific electromagnetic responses. They have attracted great attention due to their singular ability to control electromagnetic waves at will. With tunable materials incorporated into the metasurfaces design, one can realize tunable/reconfigurable metadevices with functionalities controlled by external stimuli, opening a new platform to dynamically manipulate electromagnetic waves. In this paper, we introduce some theoretical foundations of the electromagnetic properties of tunable/reconfigurable chiral metasurfaces. When a linearly polarized light enters a tunable chiral metasurface, it can be decomposed into left-handed circularly polarized (LCP) wave and right-handed circularly polarized (RCP) wave. By changing the dielectric constant and magnetic permeability of the medium through the external environment, the metadevices can dynamically control the response characteristics to various polarized lights, especially circularly polarized lights such as refractive index, dichroism, optical rotation, asymmetric transmission, etc. According to the properties of negative refractive index, circular dichroism, optical rotation, and asymmetric transmission controlled by the tunable chiral metasurfaces, we review the latest research progress. Finally, we put forward our own opinions on the possible future development directions and existing challenges of the rapidly developing field of the tunable chiral metasurface.