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控制平面手性超表面中的非对称传输相位。

Controlling asymmetric transmission phase in planar chiral metasurfaces.

作者信息

Zhang Ranran, Zhao Qiuling, Wang Xia, Lau Kai Ming, Yung Tsz Kit, Li Jensen, Tam Wing Yim

机构信息

Physics Department, Optoelectronic Materials and Technologies Engineering Laboratory, Shandong, QingDao University of Science and Technology, Qingdao, Shandong, China.

Department of Physics and William Mong Institute of Nano Science and Technology, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, China.

出版信息

Nanophotonics. 2021 Dec 22;11(3):495-505. doi: 10.1515/nanoph-2021-0558. eCollection 2022 Jan.

Abstract

Metasurfaces with ultrathin artificial structures have attracted much attention because of their unprecedented capability in light manipulations. The recent development of metasurfaces with controllable responses opens up new opportunities in various applications. Moreover, metasurfaces composed of twisted chiral structures can generate asymmetric responses for opposite incidence, leading to more degrees of freedom in wave detections and controls. However, most past studies had focused on the amplitude responses, not to mention using bi-directional phase responses, in the characterization and light manipulation of chiral metasurfaces. Here, we report a birefringent interference approach to achieve a controllable asymmetric bi-directional transmission phase from planar chiral metasurface by tuning the orientation of the metasurface with respect to the optical axis of an add-on birefringent substrate. To demonstrate our approach, we fabricate planar Au sawtooth nanoarray metasurface and measure the asymmetric transmission phase of the metasurface placed on a birefringent sapphire crystal slab. The Au sawtooth metasurface-sapphire system exhibits large oscillatory behavior for the asymmetric transmission phase with the tuning parameter. We confirm our experimental results by Jones matrix calculations using data obtained from full-wave simulations for the metasurface. Our approach in the characterization and light manipulation of metasurfaces with controllable responses is simple and nondestructive, enabling new functionalities and potential applications in optical communication, imaging, and remote sensing.

摘要

具有超薄人工结构的超表面因其在光操纵方面前所未有的能力而备受关注。具有可控响应的超表面的最新进展为各种应用开辟了新机遇。此外,由扭曲的手性结构组成的超表面可以对相反的入射产生不对称响应,从而在波检测和控制方面带来更多自由度。然而,在过去的大多数研究中,在对手性超表面进行表征和光操纵时,主要关注的是幅度响应,更不用说使用双向相位响应了。在此,我们报告了一种双折射干涉方法,通过调整超表面相对于附加双折射衬底光轴的取向,从平面手性超表面实现可控的不对称双向传输相位。为了证明我们的方法,我们制备了平面金锯齿纳米阵列超表面,并测量了放置在双折射蓝宝石晶体板上的超表面的不对称传输相位。金锯齿超表面 - 蓝宝石系统在不对称传输相位方面随调谐参数呈现出较大的振荡行为。我们使用从超表面的全波模拟获得的数据通过琼斯矩阵计算来证实我们的实验结果。我们在具有可控响应的超表面的表征和光操纵方面的方法简单且无损,为光通信、成像和遥感带来了新功能和潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f8d/11501898/6449038ca6ae/j_nanoph-2021-0558_fig_001.jpg

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