Electromagnetic metasurfaces: physics and applications

Электромагнитные метаповерхности: физика и применения
Shulin Sun, Lei Zhou, Qiong He, Shiyi Xiao, Jiaming Hao
2019-06-17

electromagnetic metasurfaceshomogeneous metasurfacesinhomogeneous metasurfacesmeta-atomswave manipulation
Metasurfaces are ultrathin metamaterials consisting of planar electromagnetic (EM) microstructures (e.g., meta-atoms) with pre-determined EM responses arranged in specific sequences. Based on careful structural designs on both meta-atoms and global sequences, one can realize homogenous and inhomogeneous metasurfaces that can possess exceptional capabilities to manipulate EM waves, serving as ideal candidates to realize ultracompact and highly efficient EM devices for next-generation integration-optics applications. In this paper, we present an overview on the development of metasurfaces, including both homogeneous and inhomogeneous ones, focusing particularly on their working principles, the fascinating wave-manipulation effects achieved both statically and dynamically, and the representative applications so far realized. Finally, we also present our own perspectives on possible future directions of this fast-developing research field in the conclusion.
1
Careful designs of individual meta-atoms and their global sequences enable both homogeneous and inhomogeneous metasurfaces with advanced electromagnetic-wave manipulation capabilities.
2
Metasurfaces are ultrathin metamaterials composed of planar electromagnetic microstructures with engineered responses and spatial arrangements.
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Metasurfaces can support static and dynamic wave-manipulation effects, enabling ultracompact and highly efficient electromagnetic devices for next-generation integrated optics.
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The paper reviews metasurface working principles, demonstrated wave-manipulation phenomena, representative applications, and prospective future research directions.

electromagnetic metasurfaces, including homogeneous and inhomogeneous planar metamaterials composed of arranged EM microstructures

their working principles, static and dynamic electromagnetic-wave manipulation effects, and representative applications

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2019-06-17
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Shulin Sun
Lei Zhou
Qiong He
Shiyi Xiao
Jiaming Hao
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