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利用介质超表面产生同心空间变化线性偏振光。

Generation of Concentric Space-Variant Linear Polarized Light by Dielectric Metalens.

作者信息

Chang Wen-Hao, Lin Jun-Han, Kuan Chieh-Hsiung, Huang Ssu-Yen, Lan Yann-Wen, Lu Ting-Hua

机构信息

Department of Physics, National Taiwan University, Taipei 106, Taiwan.

Graduate Institute of Electronics Engineering, National Taiwan University, Taipei 106, Taiwan.

出版信息

Nano Lett. 2021 Jan 13;21(1):562-568. doi: 10.1021/acs.nanolett.0c04021. Epub 2020 Dec 10.

Abstract

Miniaturized flat and ultrathin optical components with spatial and polarization degrees of freedom are important for optical communications. Here, we use nanostructures that act as tiny phase plates on a dielectric metalens to generate a concentric polarization beam with different orientations along the radial direction. The important discoveries are that (1) the circularly polarized light can be converted into linearly polarized states with a different orientation at near field and that (2) this orientation is strongly correlated to the rotation of the nanostructures on the metalens. Stokes parameters are utilized to investigate the comprehensive polarization states embedded in the optical intensity along the propagation direction. The variation of the spatial polarization states transformed by the dielectric metalens can be properly mapped onto the Poincaré sphere. We believe that the variety of spatial polarizations within a miniaturized configuration provides a new degree of freedom for diverse applications in the future.

摘要

具有空间和偏振自由度的小型扁平超薄光学元件对光通信至关重要。在此,我们使用在介电超表面上充当微小相位板的纳米结构,以产生沿径向具有不同取向的同心偏振光束。重要发现是:(1)圆偏振光在近场可转换为具有不同取向的线偏振态;(2)该取向与超表面上纳米结构的旋转密切相关。利用斯托克斯参数研究沿传播方向嵌入光强中的综合偏振态。介电超表面变换的空间偏振态变化可恰当地映射到庞加莱球上。我们相信,在小型化配置中各种空间偏振为未来的多样化应用提供了新的自由度。

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