机械可重构元表面:制造与应用

Yinghao Zhao, Zhiguang Liu, Chongrui Li, Wenlong Jiao, Senlin Jiang, Xiaowei Li, Jiahua Duan, Jiafang Li
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引用次数: 0

摘要

控制光波面的光学元表面在从成像到光谱学等各种应用中发挥着重要作用。在过去的十年中,基于元表面的动态光学操纵在各种可重构机制上得到了广泛研究,为空间和时间维度的光控制提供了基础。其中,机械重构作为最直接的方法之一,可以通过外部刺激改变组成元原子的几何形状,从而促进元表面从单一功能向多功能演变。本综述重点介绍当前机械可重构元表面背后的主要机制,包括机械、电、热和光学调制。简要介绍了它们的新兴应用,如动态聚焦、图像显示、光束转向、偏振操纵器、热辐射等。此外,还总结了这一动态和快速发展的研究领域所面临的主要挑战和未来发展方向,为相关领域的进步提供了见解和未来展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Mechanically reconfigurable metasurfaces: fabrications and applications
Optical metasurfaces that control the light wavefront play an important role in various applications, from imaging to spectroscopy. Over the past decade, metasurfaces-based dynamic optical manipulation has been broadly investigated on diverse reconfigurable mechanisms, providing a footing ground for light control in both spatial and temporal dimensions. Therein, mechanical reconfiguration, as one of the most direct methods, allows for the geometric alteration of constituent meta-atoms through external stimuli, thereby facilitating the evolution of metasurfaces from single function to multifunctional. This review focuses on introducing the primary mechanisms behind current mechanically reconfigurable metasurfaces, including mechanical, electrical, thermal, and optical modulations. Their emerging applications, such as dynamic focusing, image display, beam steering, polarization manipulator, thermal radiation, etc., are briefly highlighted. The main challenges and future development directions are also summarized within this dynamic and rapidly evolving research area, offering insights and future perspectives for advancements in the related fields.
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