Infrared metasurface-enabled compact polarization nanodevices

IF 21.1 1区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Materials Today Pub Date : 2021-11-01 DOI:10.1016/j.mattod.2021.06.014
Guangtao Cao , He-Xiu Xu , Lei-Ming Zhou , Yan Deng , Yixuan Zeng , Shaohua Dong , Qing Zhang , Yangjun Li , Hui Yang , Qinghai Song , Xinke Liu , Ying Li , Cheng-Wei Qiu
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引用次数: 31

Abstract

Infrared metasurface, especially that having a working range covering wavelengths from 0.75 to 25 μm, has been exploited as a revolutionary tool to manipulate the properties of electromagnetic waves owing to its potential applications in military and civilian fields. It owns the capacity to steer electromagnetic waves within subwavelength scale, with full degrees of freedom such as phase, amplitude and polarization, allowing the development of a number of planar meta-devices including the metalens, hologram, wave-plate and polarimeter. In particular, polarization, which determines the interaction of electromagnetic waves with matter, is important in almost every area of science. However, conventional materials for infrared polarization control inevitably introduce extra optical components and bulky configurations, hindering future miniaturization and integration. Moreover, compared with their short wavelength counterparts, polarization nanodevices in the infrared band and especially those in the long-wavelength infrared region have been far less explored due to the loss of material and immature fabrication techniques. Here, we review recent progress in the development of infrared metasurfaces in terms of generating, manipulating and detecting the polarization on standard and higher-order Poincaré spheres. The principles, typical strategies and emerging applications of these processes are introduced. We also discuss the challenges and outlook of future developments in this emerging field.

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红外超表面紧凑型极化纳米器件
红外超表面,特别是其工作波长范围为0.75 ~ 25 μm的超表面,由于其在军事和民用领域的潜在应用,已被开发为一种革命性的工具来操纵电磁波的特性。它具有亚波长范围内的电磁波引导能力,具有相位、振幅和偏振等全自由度,可用于开发超构透镜、全息图、波片和偏振计等多种平面元器件。特别是极化,它决定了电磁波与物质的相互作用,几乎在每个科学领域都很重要。然而,传统的红外偏振控制材料不可避免地引入了额外的光学元件和笨重的结构,阻碍了未来的小型化和集成化。此外,由于材料的损失和制造技术的不成熟,与短波长的偏振纳米器件相比,红外波段的偏振纳米器件,特别是长波红外区的偏振纳米器件的研究还远远不够。本文综述了近年来红外超表面在标准球和高阶球偏振的产生、操纵和检测等方面的研究进展。介绍了这些工艺的原理、典型策略和新兴应用。我们还讨论了这一新兴领域的挑战和未来发展前景。
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来源期刊
Materials Today
Materials Today 工程技术-材料科学:综合
CiteScore
36.30
自引率
1.20%
发文量
237
审稿时长
23 days
期刊介绍: Materials Today is the leading journal in the Materials Today family, focusing on the latest and most impactful work in the materials science community. With a reputation for excellence in news and reviews, the journal has now expanded its coverage to include original research and aims to be at the forefront of the field. We welcome comprehensive articles, short communications, and review articles from established leaders in the rapidly evolving fields of materials science and related disciplines. We strive to provide authors with rigorous peer review, fast publication, and maximum exposure for their work. While we only accept the most significant manuscripts, our speedy evaluation process ensures that there are no unnecessary publication delays.
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