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31 March 2023 Revolutionary meta-imaging: from superlens to metalens
Tao Li, Chen Chen, Xingjian Xiao, Ji Chen, Shanshan Hu, Shining Zhu
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Abstract

The refractive-lens technique has been well developed over a long period of evolution, offering powerful imaging functionalities, such as microscopes, telescopes, and spectroscopes. Nevertheless, the ever-growing requirements continue to urge further enhanced imaging capabilities and upgraded devices that are more compact for convenience. Metamaterial as a fascinating concept has inspired unprecedented new explorations in physics, material science, and optics, not only in fundamental researches but also novel applications. Along with the imaging topic, this paper reviews the progress of the flat lens as an important branch of metamaterials, covering the early superlens with super-diffraction capability and current hot topics of metalenses including a paralleled strategy of multilevel diffractive lenses. Numerous efforts and approaches have been dedicated to areas ranging from the new fascinating physics to feasible applications. This review provides a clear picture of the flat-lens evolution from the perspective of metamaterial design, elucidating the relation and comparison between a superlens and metalens, and addressing derivative designs. Finally, application scenarios that favor the ultrathin lens technique are emphasized with respect to possible revolutionary imaging devices, followed by conclusive remarks and prospects.

CC BY: © The Authors. Published by CLP and SPIE under a Creative Commons Attribution 4.0 International License. Distribution or reproduction of this work in whole or in part requires full attribution of the original publication, including its DOI.
Tao Li, Chen Chen, Xingjian Xiao, Ji Chen, Shanshan Hu, and Shining Zhu "Revolutionary meta-imaging: from superlens to metalens," Photonics Insights 2(1), R01 (31 March 2023). https://doi.org/10.3788/PI.2023.R01
Received: 10 October 2022; Accepted: 16 December 2022; Published: 31 March 2023
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CITATIONS
Cited by 21 scholarly publications.
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KEYWORDS
Design and modelling

Metalenses

Lenses

Diffraction

Photonics

Waveguides

Dielectric polarization

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