电磁波裁剪:从一维到多维

Jing Cheng Zhang;Geng-Bo Wu;Mu Ku Chen;Xiaoyu Che;Yao Liang;Din Ping Tsai;Chi Hou Chan
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引用次数: 0

摘要

超表面,被称为亚波长天线阵列,为控制电磁波提供了广泛的选择,并有效地减少了电磁设备的尺寸和复杂性。超表面可以操纵电磁波的五个自由度:振幅、波长、极化、相位和轨道角动量;这些是定制的,以提供各种显着的功能,包括超透镜和元全息图。随着同时操纵电磁场的两个或多个自由度的进步,电磁波所能携带的信息量有了显著的增加。波前可以针对特定应用进行精确定制,为具有高性能和多种功能的创新应用提供了新的可能性,例如由单层超表面实现的全彩矢量元全息图。本文简要概述了超表面的最新进展,并根据它们用于操纵电磁波的不同自由度对它们进行了分类。系统地探讨了利用超表面控制电磁波从一维到多维的过程。讨论了未来研究面临的挑战和机遇。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electromagnetic Wave Tailoring: From One Dimension to Multiple Dimensions
Metasurfaces, known as arrays of subwavelength antennas, provide a wide range of options for controlling electromagnetic waves and effectively reducing the size and complexity of electromagnetic devices. Metasurfaces can manipulate five degrees of freedom of electromagnetic waves: amplitude, wavelength, polarization, phase, and orbital angular momentum; these are customized to provide a variety of remarkable functionalities, including metalenses and meta-holograms. With the advancement of simultaneously manipulating two or more degrees of freedom of the electromagnetic field, there has been a significant increase in the amount of information that electromagnetic waves can carry. The wavefront can be precisely tailored for specific applications, facilitating new possibilities for innovative applications with high performance and diverse functionalities, such as full-color vectorial meta-holograms achieved by a single-layer metasurface. This review briefly overviews the latest developments in metasurfaces, categorizing them based on their various degrees of freedom used to manipulate the electromagnetic waves. The use of metasurfaces to control electromagnetic waves from one dimension to multiple dimensions is systematically explored. The challenges and opportunities for future research are discussed.
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